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JOEPIE ON HIS WAY TO SAFE PETER FROM THE BAD BIRD || JOEPIE OP WEG OM PETER TE REDDEN VAN DE BOZE VOGEL

Anne-Miek Bibbe posted a photo:

JOEPIE: I'm almost there! I wish Uncle Jeroen was here, I'm a little, really just a little bit afraid of the dark.
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JOEPIE: Ik ben bijna bij Peter! Ik wou dat oom Jeroen hier was, ik ben een beetje, echt maar een héél klein beetje bang in het donker.




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On Lamperti transformation and AR(1) type characterisations of discrete random fields

Marko Voutilainen, Lauri Viitasaari and Pauliina Ilmonen
Theor. Probability and Math. Statist. 111 (), 181-197.
Abstract, references and article information




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Asymptotic normality of estimators for all parameters in the Vasicek model by discrete observations

Olha Prykhodko and Kostiantyn Ralchenko
Theor. Probability and Math. Statist. 111 (), 123-135.
Abstract, references and article information








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Caraiani to Receive 2025 AMS Satter Prize

Ana Caraiani, Royal Society University Research Fellow and professor of pure mathematics, Imperial College London, has been awarded the 2025 Ruth Lyttle Satter Prize in Mathematics by the American Mathematical Society (AMS). She has been honored for contributions to arithmetic geometry and number theory: in particular, the Langlands program.

Ana Caraiani
Louise Rose Photography

From the citation

Ana Caraiani’s work is characterized by a combination of novel ideas and a fearlessness in the face of technical obstacles that would daunt almost any other researcher. This has enabled her to prove several fundamental theorems in the Langlands program.

In the joint paper with Scholze, titled “On the generic part of the cohomology of non-compact unitary Shimura varieties” (Annals of Math., 2024), Caraiani proved very general results about the torsion cohomology classes in non-compact Shimura varieties, strengthening the early results in their 2017 paper in the compact case. The proof is a tour de force, combining perfectoid spaces, a mastery of the trace formula, and a new theory of perverse sheaves in p-adic geometry. These results are of intrinsic interest (for example, they give the first indications of a characteristic p version of Arthur’s conjectures), but they also have many applications throughout the Langlands program. One spectacular application of these results is in her joint paper, “Potential automorphy over CM fields” (with Allen, Calegari, Gee, Helm, Le Hung, Newton, Scholze, Taylor, and Thorne, Annals of Math., 2023), which among other results proves the Ramanujan conjecture for Bianchi modular forms, a problem that had been thought of as being completely out of reach.

The Ramanujan conjecture is of analytic nature, asserting a bound on the eigenvalue of a certain differential operator, but the only way in which cases of it have been proved is via algebraic geometry. In particular, the original Ramanujan conjecture for modular forms was proved by Deligne in the 1970s, as a consequence of his proof of the Weil conjectures. However, in the case of Bianchi modular forms there is no direct relationship with algebraic geometry, and it seems to be impossible to make any direct deductions from the Weil conjectures. Langlands (also in the 1970s) suggested a strategy for proving the Ramanujan conjecture as a consequence of his functoriality conjecture. Caraiani and her coauthors’ proof of the Ramanujan conjecture for Bianchi modular forms proceeds via a variant of Langlands’ strategy, and in particular does not use the Weil conjectures.

Most recently with James Newton, in the paper “On the modularity of elliptic curves over imaginary quadratic fields” (arXiv: 2301.10509), Caraiani has improved upon these results and applied them to the modularity of elliptic curves over imaginary quadratic fields. They come close to completely solving it, with only a small number of exceptions (which constitute 0% of cases).

Response of Ana Caraiani

First, I would like to thank Joan Birman and the AMS for establishing an award that recognizes research contributions by women mathematicians. This is particularly meaningful to me because I looked to many of the previous recipients of the Satter Prize for inspiration at challenging moments in my career. It is a great honour to be selected as a recipient!

I am indebted to my many collaborators, mentors and colleagues who have generously shared their mathematical ideas with me over the years and supported me in different but crucial ways. Special thanks go to Peter Scholze for the wonderful opportunity to collaborate with him on understanding a part of the geometry and cohomology of Shimura varieties, to Richard Taylor for initiating the "ten author" collaboration, which was much more successful than we had originally expected, and to James Newton for our joyful exploration of elliptic curves over imaginary quadratic fields. I also particularly want to acknowledge Jessica Fintzen and Toby Gee for their longstanding friendship and moral support.

Finally, I want to thank my family, especially my husband, Steven, my mother, Zoe, and my daughter, Nadia.

Biographical sketch of Ana Caraiani

Ana Caraiani was born in Bucharest, Romania, in 1984. She received a bachelor's degree in mathematics from Princeton University in 2007 and completed her PhD at Harvard University in 2012. After temporary positions at the University of Chicago, Princeton and the Institute for Advanced Study (IAS), and the University of Bonn, she moved to Imperial College London in 2017, where she is currently a Royal Society University Research Fellow and Professor of Pure Mathematics. She is a Fellow of the AMS, a recipient of an EMS Prize and a New Horizons Prize in Mathematics and was an invited speaker at the 2022 ICM. 

About the prize

Awarded every two years, the Ruth Lyttle Satter Prize in Mathematics recognizes an outstanding contribution to mathematics research by a woman in the previous six years. The prize was established by Joan Birman in honor of her sister, Ruth. The 2025 prize will be recognized during the 2025 Joint Mathematics Meetings in January in Seattle.

Read more and see the list of past recipients.

Contact: AMS Communications

* * * * *

The American Mathematical Society is dedicated to advancing research and connecting the diverse global mathematical community through our publications, meetings and conferences, MathSciNet, professional services, advocacy, and awareness programs.

 




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US Navy destroyers unscathed after fighting off a complex attack of cruise and ballistic missiles and exploding drones




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Woman in custody after allegedly stabbing boyfriend in Los Angeles




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Warren Buffett Told Young Investors To Buy Homes Instead Of Stocks, Calling 30-Year Mortgages 'A Terrific Deal'




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Community scrambles after top insurance company refuses to pay out homeowners following destructive hurricane: 'Denied or closed with no payment'




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The Morning After: Apple makes its iOS Find My features much more useful




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Northern California man goes missing after Uber ride from Bay Area to Placer County




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Scammers posing as Nigy Boy’s team trick promoter

Nigy Boy's management team was forced to put out a scam alert on Thursday as news surfaced that a promoter in the Turks and Caicos Islands, inadvertently wired thousands of US dollars to who he believed was the artiste's booking team as a deposit...




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Cali P enjoys buzz with ‘Secret Hater’

Switzerland-based reggae and dancehall recording artiste Cali P has expressed gratitude to the public for supporting his music, following the release of his latest single ' Secret Hater'. The song, which was produced jointly by himself and Suku...




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ENTERTAINMENT DIARY

TODAY KINGSTON...




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‘One-burner’ life - Vybz Kartel credits fiancée for new chapter

Long hailed as dancehall's most controversial figure, Vybz Kartel has always commanded the spotlight with his edgy lyrics and unfiltered persona. But since his release from prison in July, Kartel has begun to show a surprising transformation that'...




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ENTERTAINMENT DIARY

TODAY KINGSTON...




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A mom’s worst nightmare - East Kingston mother mourns teen son after deadly clash with cops

Kadian Morgan was overwhelmed with grief as she leaned against a wall outside her gate on Jackson Lane, East Kingston, yesterday, tears streaming down her face. Her 19-year-old son, Kayshan 'Bem Bem' Smith, was lying in the morgue after being...




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Making the dead look better - Jamaican morticians get advanced skills in embalming and cosmetics

For many Jamaicans, the deceased are more than just loved ones who have passed on; they are cherished family members who deserve to look as presentable as they did in life. In a culture where the appearance of the deceased is paramount, morticians...




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Policeman's murder won't deter fight against crime says Superintendent Nicholson

A police sergeant who was shot and injured at his home in Portmore, St Catherine, on Thursday night succumbed to his injuries on Monday morning.




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Bridge over troubled water - Bushy Park residents construct new walkway after floodwaters sweep away old one

After parking his taxi cab along the sidewalk, Leon Thompson exited his vehicle and held on tightly to the tiny hands of his four small passengers. They all walked towards a makeshift bridge, and Thompson lifted each child, making four trips,...




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Man leaving home to live in cemetery

With tears streaming down his face and his voice trembling, a windshield wiper made a declaration that he would rather live in the cemetery than with his relatives. "A the cemetery me ago live. Unnu wicked to me," Ramarieo Bailey declared. Bailey...




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Manchester man charged with smoking ganja in public

Twenty-eight-year-old labourer Michael Ennis, of Manning's Hill district in Manchester, has been charged with smoking ganja in a public place following an incident in May Pen, Clarendon on Monday.




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Haiti's main airport and capital frozen after a day of violence

PORT-AU-PRINCE, Haiti (AP) — Haiti's main airport remained closed on Tuesday, a day after violence erupted as the country swore in its new prime minister in a politically tumultuous transition.




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Father imprisoned for sexually molesting daughter

A father who pleaded guilty to sexually molesting his 13-year-old daughter was sentenced to several years of imprisonment in the St Catherine Circuit Court on Tuesday.




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A trade-off switch of two immunological memories in Caenorhabditis elegans reinfected by bacterial pathogens [Microbiology]

Recent studies have suggested that innate immune responses exhibit characteristics associated with memory linked to modulations in both vertebrates and invertebrates. However, the diverse evolutionary paths taken, particularly within the invertebrate taxa, should lead to similarly diverse innate immunity memory processes. Our understanding of innate immune memory in invertebrates primarily comes from studies of the fruit fly Drosophila melanogaster, the generality of which is unclear. Caenorhabditis elegans typically inhabits soil harboring a variety of fatal microbial pathogens; for this invertebrate, the innate immune system and aversive behavior are the major defensive strategies against microbial infection. However, their characteristics of immunological memory remains infantile. Here we discovered an immunological memory that promoted avoidance and suppressed innate immunity during reinfection with bacteria, which we revealed to be specific to the previously exposed pathogens. During this trade-off switch of avoidance and innate immunity, the chemosensory neurons AWB and ADF modulated production of serotonin and dopamine, which in turn decreased expression of the innate immunity-associated genes and led to enhanced avoidance via the downstream insulin-like pathway. Therefore, our current study profiles the immune memories during C. elegans reinfected by pathogenic bacteria and further reveals that the chemosensory neurons, the neurotransmitter(s), and their associated molecular signaling pathways are responsible for a trade-off switch between the two immunological memories.




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Biochemical transformation of bacterial lipopolysaccharides by acyloxyacyl hydrolase reduces host injury and promotes recovery [Enzymology]

Animals can sense the presence of microbes in their tissues and mobilize their own defenses by recognizing and responding to conserved microbial structures (often called microbe-associated molecular patterns (MAMPs)). Successful host defenses may kill the invaders, yet the host animal may fail to restore homeostasis if the stimulatory microbial structures are not silenced. Although mice have many mechanisms for limiting their responses to lipopolysaccharide (LPS), a major Gram-negative bacterial MAMP, a highly conserved host lipase is required to extinguish LPS sensing in tissues and restore homeostasis. We review recent progress in understanding how this enzyme, acyloxyacyl hydrolase (AOAH), transforms LPS from stimulus to inhibitor, reduces tissue injury and death from infection, prevents prolonged post-infection immunosuppression, and keeps stimulatory LPS from entering the bloodstream. We also discuss how AOAH may increase sensitivity to pulmonary allergens. Better appreciation of how host enzymes modify LPS and other MAMPs may help prevent tissue injury and hasten recovery from infection.




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C-tag TNF: a reporter system to study TNF shedding [Methods and Resources]

TNF is a highly pro-inflammatory cytokine that contributes not only to the regulation of immune responses but also to the development of severe inflammatory diseases. TNF is synthesized as a transmembrane protein, which is further matured via proteolytic cleavage by metalloproteases such as ADAM17, a process known as shedding. At present, TNF is mainly detected by measuring the precursor or the mature cytokine of bulk cell populations by techniques such as ELISA or immunoblotting. However, these methods do not provide information on the exact timing and extent of TNF cleavage at single-cell resolution and they do not allow the live visualization of shedding events. Here, we generated C-tag TNF as a genetically encoded reporter to study TNF shedding at the single-cell level. The functionality of the C-tag TNF reporter is based on the exposure of a cryptic epitope on the C terminus of the transmembrane portion of pro-TNF on cleavage. In both denatured and nondenatured samples, this epitope can be detected by a nanobody in a highly sensitive and specific manner only upon TNF shedding. As such, C-tag TNF can successfully be used for the detection of TNF cleavage in flow cytometry and live-cell imaging applications. We furthermore demonstrate its applicability in a forward genetic screen geared toward the identification of genetic regulators of TNF maturation. In summary, the C-tag TNF reporter can be employed to gain novel insights into the complex regulation of ADAM-dependent TNF shedding.




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12th International Forum on Illegal, Unreported and Unregulated Fishing

12th International Forum on Illegal, Unreported and Unregulated Fishing 18 May 2020 TO 22 May 2020 — 2:00PM TO 3:30PM Anonymous (not verified) 27 September 2019

The Chatham House 12th International Forum on Illegal, Unreported and Unregulated (IUU) Fishing took place over the week of 18–22 May 2020.

Due to COVID-19, it took the form of a series of daily webinars. The digital conference, which comprised six sessions and three keynote speeches, brought together more than 750 representatives of international organizations, governments, civil society organizations, businesses and academia – from 87 different countries – to discuss the latest initiatives, regulations and research in the areas of fisheries governance and trade in illegal fish products.




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Structural and biochemical characteristics of two Staphylococcus epidermidis RNase J paralogs RNase J1 and RNase J2 [Protein Structure and Folding]

RNase J enzymes are metallohydrolases that are involved in RNA maturation and RNA recycling, govern gene expression in bacteria, and catalyze both exonuclease and endonuclease activity. The catalytic activity of RNase J is regulated by multiple mechanisms which include oligomerization, conformational changes to aid substrate recognition, and the metal cofactor at the active site. However, little is known of how RNase J paralogs differ in expression and activity. Here we describe structural and biochemical features of two Staphylococcus epidermidis RNase J paralogs, RNase J1 and RNase J2. RNase J1 is a homodimer with exonuclease activity aided by two metal cofactors at the active site. RNase J2, on the other hand, has endonuclease activity and one metal ion at the active site and is predominantly a monomer. We note that the expression levels of these enzymes vary across Staphylococcal strains. Together, these observations suggest that multiple interacting RNase J paralogs could provide a strategy for functional improvisation utilizing differences in intracellular concentration, quaternary structure, and distinct active site architecture despite overall structural similarity.




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{alpha}2-Macroglobulin-like protein 1 can conȷugate and inhibit proteases through their hydroxyl groups, because of an enhanced reactivity of its thiol ester [Protein Structure and Folding]

Proteins in the α-macroglobulin (αM) superfamily use thiol esters to form covalent conjugation products upon their proteolytic activation. αM protease inhibitors use theirs to conjugate proteases and preferentially react with primary amines (e.g. on lysine side chains), whereas those of αM complement components C3 and C4B have an increased hydroxyl reactivity that is conveyed by a conserved histidine residue and allows conjugation to cell surface glycans. Human α2-macroglobulin–like protein 1 (A2ML1) is a monomeric protease inhibitor but has the hydroxyl reactivity–conveying histidine residue. Here, we have investigated the role of hydroxyl reactivity in a protease inhibitor by comparing recombinant WT A2ML1 and the A2ML1 H1084N mutant in which this histidine is removed. Both of A2ML1s' thiol esters were reactive toward the amine substrate glycine, but only WT A2ML1 reacted with the hydroxyl substrate glycerol, demonstrating that His-1084 increases the hydroxyl reactivity of A2ML1's thiol ester. Although both A2ML1s conjugated and inhibited thermolysin, His-1084 was required for the conjugation and inhibition of acetylated thermolysin, which lacks primary amines. Using MS, we identified an ester bond formed between a thermolysin serine residue and the A2ML1 thiol ester. These results demonstrate that a histidine-enhanced hydroxyl reactivity can contribute to protease inhibition by an αM protein. His-1084 did not improve A2ML1's protease inhibition at pH 5, indicating that A2ML1's hydroxyl reactivity is not an adaption to its acidic epidermal environment.




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PFN2 and NAA80 cooperate to efficiently acetylate the N-terminus of actin [Protein Structure and Folding]

The actin cytoskeleton is of profound importance to cell shape, division, and intracellular force generation. Profilins bind to globular (G-)actin and regulate actin filament formation. Although profilins are well-established actin regulators, the distinct roles of the dominant profilin, profilin 1 (PFN1), versus the less abundant profilin 2 (PFN2) remain enigmatic. In this study, we use interaction proteomics to discover that PFN2 is an interaction partner of the actin N-terminal acetyltransferase NAA80, and further confirm this by analytical ultracentrifugation. Enzyme assays with NAA80 and different profilins demonstrate that PFN2 binding specifically increases the intrinsic catalytic activity of NAA80. NAA80 binds PFN2 through a proline-rich loop, deletion of which abrogates PFN2 binding. Small-angle X-ray scattering shows that NAA80, actin, and PFN2 form a ternary complex and that NAA80 has partly disordered regions in the N-terminus and the proline-rich loop, the latter of which is partly ordered upon PFN2 binding. Furthermore, binding of PFN2 to NAA80 via the proline-rich loop promotes binding between the globular domains of actin and NAA80, and thus acetylation of actin. However, the majority of cellular NAA80 is stably bound to PFN2 and not to actin, and we propose that this complex acetylates G-actin before it is incorporated into filaments. In conclusion, we reveal a functionally specific role of PFN2 as a stable interactor and regulator of the actin N-terminal acetyltransferase NAA80, and establish the modus operandi for NAA80-mediated actin N-terminal acetylation, a modification with a major impact on cytoskeletal dynamics.




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Polydisperse molecular architecture of connexin 26/30 heteromeric hemichannels revealed by atomic force microscopy imaging [Protein Structure and Folding]

Connexin (Cx) protein forms hemichannels and gap junctional channels, which play diverse and profound roles in human physiology and diseases. Gap junctions are arrays of intercellular channels formed by the docking of two hemichannels from adjacent cells. Each hexameric hemichannel contains the same or different Cx isoform. Although homomeric Cxs forms have been largely described functionally and structurally, the stoichiometry and arrangement of heteromeric Cx channels remain unknown. The latter, however, are widely expressed in human tissues and variation might have important implications on channel function. Investigating properties of heteromeric Cx channels is challenging considering the high number of potential subunit arrangements and stoichiometries, even when only combining two Cx isoforms. To tackle this problem, we engineered an HA tag onto Cx26 or Cx30 subunits and imaged hemichannels that were liganded by Fab-epitope antibody fragments via atomic force microscopy. For Cx26-HA/Cx30 or Cx30-HA/Cx26 heteromeric channels, the Fab-HA binding distribution was binomial with a maximum of three Fab-HA bound. Furthermore, imaged Cx26/Cx30-HA triple liganded by Fab-HA showed multiple arrangements that can be derived from the law of total probabilities. Atomic force microscopy imaging of ringlike structures of Cx26/Cx30-HA hemichannels confirmed these findings and also detected a polydisperse distribution of stoichiometries. Our results indicate a dominant subunit stoichiometry of 3Cx26:3Cx30 with the most abundant subunit arrangement of Cx26-Cx26-Cx30-Cx26-Cx30-Cx30. To our knowledge, this is the first time that the molecular architecture of heteromeric Cx channels has been revealed, thus providing the basis to explore the functional effect of these channels in biology.




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Representative cancer-associated U2AF2 mutations alter RNA interactions and splicing [Molecular Bases of Disease]

High-throughput sequencing of hematologic malignancies and other cancers has revealed recurrent mis-sense mutations of genes encoding pre-mRNA splicing factors. The essential splicing factor U2AF2 recognizes a polypyrimidine-tract splice-site signal and initiates spliceosome assembly. Here, we investigate representative, acquired U2AF2 mutations, namely N196K or G301D amino acid substitutions associated with leukemia or solid tumors, respectively. We determined crystal structures of the wild-type (WT) compared with N196K- or G301D-substituted U2AF2 proteins, each bound to a prototypical AdML polypyrimidine tract, at 1.5, 1.4, or 1.7 Å resolutions. The N196K residue appears to stabilize the open conformation of U2AF2 with an inter-RNA recognition motif hydrogen bond, in agreement with an increased apparent RNA-binding affinity of the N196K-substituted protein. The G301D residue remains in a similar position as the WT residue, where unfavorable proximity to the RNA phosphodiester could explain the decreased RNA-binding affinity of the G301D-substituted protein. We found that expression of the G301D-substituted U2AF2 protein reduces splicing of a minigene transcript carrying prototypical splice sites. We further show that expression of either N196K- or G301D-substituted U2AF2 can subtly alter splicing of representative endogenous transcripts, despite the presence of endogenous, WT U2AF2 such as would be present in cancer cells. Altogether, our results demonstrate that acquired U2AF2 mutations such as N196K and G301D are capable of dysregulating gene expression for neoplastic transformation.




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Characterizing human {alpha}-1,6-fucosyltransferase (FUT8) substrate specificity and structural similarities with related fucosyltransferases [Protein Structure and Folding]

Mammalian Asn-linked glycans are extensively processed as they transit the secretory pathway to generate diverse glycans on cell surface and secreted glycoproteins. Additional modification of the glycan core by α-1,6-fucose addition to the innermost GlcNAc residue (core fucosylation) is catalyzed by an α-1,6-fucosyltransferase (FUT8). The importance of core fucosylation can be seen in the complex pathological phenotypes of FUT8 null mice, which display defects in cellular signaling, development, and subsequent neonatal lethality. Elevated core fucosylation has also been identified in several human cancers. However, the structural basis for FUT8 substrate specificity remains unknown.Here, using various crystal structures of FUT8 in complex with a donor substrate analog, and with four distinct glycan acceptors, we identify the molecular basis for FUT8 specificity and activity. The ordering of three active site loops corresponds to an increased occupancy for bound GDP, suggesting an induced-fit folding of the donor-binding subsite. Structures of the various acceptor complexes were compared with kinetic data on FUT8 active site mutants and with specificity data from a library of glycan acceptors to reveal how binding site complementarity and steric hindrance can tune substrate affinity. The FUT8 structure was also compared with other known fucosyltransferases to identify conserved and divergent structural features for donor and acceptor recognition and catalysis. These data provide insights into the evolution of modular templates for donor and acceptor recognition among GT-B fold glycosyltransferases in the synthesis of diverse glycan structures in biological systems.




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Cholesterol sensing by CD81 is important for hepatitis C virus entry [Protein Structure and Folding]

CD81 plays a central role in a variety of physiological and pathological processes. Recent structural analysis of CD81 indicates that it contains an intramembrane cholesterol-binding pocket and that interaction with cholesterol may regulate a conformational switch in the large extracellular domain of CD81. Therefore, CD81 possesses a potential cholesterol-sensing mechanism; however, its relevance for protein function is thus far unknown. In this study we investigate CD81 cholesterol sensing in the context of its activity as a receptor for hepatitis C virus (HCV). Structure-led mutagenesis of the cholesterol-binding pocket reduced CD81–cholesterol association but had disparate effects on HCV entry, both reducing and enhancing CD81 receptor activity. We reasoned that this could be explained by alterations in the consequences of cholesterol binding. To investigate this further we performed molecular dynamic simulations of CD81 with and without cholesterol; this identified a potential allosteric mechanism by which cholesterol binding regulates the conformation of CD81. To test this, we designed further mutations to force CD81 into either the open (cholesterol-unbound) or closed (cholesterol-bound) conformation. The open mutant of CD81 exhibited reduced HCV receptor activity, whereas the closed mutant enhanced activity. These data are consistent with cholesterol sensing switching CD81 between a receptor active and inactive state. CD81 interactome analysis also suggests that conformational switching may modulate the assembly of CD81–partner protein networks. This work furthers our understanding of the molecular mechanism of CD81 cholesterol sensing, how this relates to HCV entry, and CD81's function as a molecular scaffold; these insights are relevant to CD81's varied roles in both health and disease.




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Identification and biochemical characterization of Asp t 36, a new fungal allergen from Aspergillus terreus [Protein Structure and Folding]

Aspergillus terreus is an allergenic fungus, in addition to causing infections in both humans and plants. However, the allergens in this fungus are still unknown, limiting the development of diagnostic and therapeutic strategies. We used a proteomic approach to search for allergens, identifying 16 allergens based on two-dimensional immunoblotting with A. terreus susceptible patient sera. We further characterized triose-phosphate isomerase (Asp t 36), one of the dominant IgE (IgE)-reactive proteins. The gene was cloned and expressed in Escherichia coli. Phylogenetic analysis showed Asp t 36 to be highly conserved with close similarity to the triose-phosphate isomerase protein sequence from Dermatophagoides farinae, an allergenic dust mite. We identified four immunodominant epitopes using synthetic peptides, and mapped them on a homology-based model of the tertiary structure of Asp t 36. Among these, two were found to create a continuous surface patch on the 3D structure, rendering it an IgE-binding hotspot. Biophysical analysis indicated that Asp t 36 shows similar secondary structure content and temperature sensitivity with other reported triose-phosphate isomerase allergens. In vivo studies using a murine model displayed that the recombinant Asp t 36 was able to stimulate airway inflammation, as demonstrated by an influx of eosinophils, goblet cell hyperplasia, elevated serum Igs, and induction of Th2 cytokines. Collectively, our results reveal the immunogenic property of Asp t 36, a major allergen from A. terreus, and define a new fungal allergen more broadly. This allergen could serve as a potent candidate for investigating component resolved diagnosis and immunotherapy.




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The C-terminal region of the plasmid partitioning protein TubY is a tetramer that can bind membranes and DNA [Protein Structure and Folding]

Bacterial low-copy-number plasmids require partition (par) systems to ensure their stable inheritance by daughter cells. In general, these systems consist of three components: a centromeric DNA sequence, a centromere-binding protein and a nucleotide hydrolase that polymerizes and functions as a motor. Type III systems, however, segregate plasmids using three proteins: the FtsZ/tubulin-like GTPase TubZ, the centromere-binding protein TubR and the MerR-like transcriptional regulator TubY. Although the TubZ filament is sufficient to transport the TubR-centromere complex in vitro, TubY is still necessary for the stable maintenance of the plasmid. TubY contains an N-terminal DNA-binding helix-turn-helix motif and a C-terminal coiled-coil followed by a cluster of lysine residues. This study determined the crystal structure of the C-terminal domain of TubY from the Bacillus cereus pXO1-like plasmid and showed that it forms a tetrameric parallel four-helix bundle that differs from the typical MerR family proteins with a dimeric anti-parallel coiled-coil. Biochemical analyses revealed that the C-terminal tail with the conserved lysine cluster helps TubY to stably associate with the TubR-centromere complex as well as to nonspecifically bind DNA. Furthermore, this C-terminal tail forms an amphipathic helix in the presence of lipids but must oligomerize to localize the protein to the membrane in vivo. Taken together, these data suggest that TubY is a component of the nucleoprotein complex within the partitioning machinery, and that lipid membranes act as mediators of type III systems.




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A structural and kinetic survey of GH5_4 endoglucanases reveals determinants of broad substrate specificity and opportunities for biomass hydrolysis [Protein Structure and Folding]

Broad-specificity glycoside hydrolases (GHs) contribute to plant biomass hydrolysis by degrading a diverse range of polysaccharides, making them useful catalysts for renewable energy and biocommodity production. Discovery of new GHs with improved kinetic parameters or more tolerant substrate-binding sites could increase the efficiency of renewable bioenergy production even further. GH5 has over 50 subfamilies exhibiting selectivities for reaction with β-(1,4)–linked oligo- and polysaccharides. Among these, subfamily 4 (GH5_4) contains numerous broad-selectivity endoglucanases that hydrolyze cellulose, xyloglucan, and mixed-linkage glucans. We previously surveyed the whole subfamily and found over 100 new broad-specificity endoglucanases, although the structural origins of broad specificity remained unclear. A mechanistic understanding of GH5_4 substrate specificity would help inform the best protein design strategies and the most appropriate industrial application of broad-specificity endoglucanases. Here we report structures of 10 new GH5_4 enzymes from cellulolytic microbes and characterize their substrate selectivity using normalized reducing sugar assays and MS. We found that GH5_4 enzymes have the highest catalytic efficiency for hydrolysis of xyloglucan, glucomannan, and soluble β-glucans, with opportunistic secondary reactions on cellulose, mannan, and xylan. The positions of key aromatic residues determine the overall reaction rate and breadth of substrate tolerance, and they contribute to differences in oligosaccharide cleavage patterns. Our new composite model identifies several critical structural features that confer broad specificity and may be readily engineered into existing industrial enzymes. We demonstrate that GH5_4 endoglucanases can have broad specificity without sacrificing high activity, making them a valuable addition to the biomass deconstruction toolset.




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Bacterial iron detoxification at the molecular level [Protein Structure and Folding]

Iron is an essential micronutrient, and, in the case of bacteria, its availability is commonly a growth-limiting factor. However, correct functioning of cells requires that the labile pool of chelatable “free” iron be tightly regulated. Correct metalation of proteins requiring iron as a cofactor demands that such a readily accessible source of iron exist, but overaccumulation results in an oxidative burden that, if unchecked, would lead to cell death. The toxicity of iron stems from its potential to catalyze formation of reactive oxygen species that, in addition to causing damage to biological molecules, can also lead to the formation of reactive nitrogen species. To avoid iron-mediated oxidative stress, bacteria utilize iron-dependent global regulators to sense the iron status of the cell and regulate the expression of proteins involved in the acquisition, storage, and efflux of iron accordingly. Here, we survey the current understanding of the structure and mechanism of the important members of each of these classes of protein. Diversity in the details of iron homeostasis mechanisms reflect the differing nutritional stresses resulting from the wide variety of ecological niches that bacteria inhabit. However, in this review, we seek to highlight the similarities of iron homeostasis between different bacteria, while acknowledging important variations. In this way, we hope to illustrate how bacteria have evolved common approaches to overcome the dual problems of the insolubility and potential toxicity of iron.




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Evolving the naturally compromised chorismate mutase from Mycobacterium tuberculosis to top performance [Protein Structure and Folding]

Chorismate mutase (CM), an essential enzyme at the branch-point of the shikimate pathway, is required for the biosynthesis of phenylalanine and tyrosine in bacteria, archaea, plants, and fungi. MtCM, the CM from Mycobacterium tuberculosis, has less than 1% of the catalytic efficiency of a typical natural CM and requires complex formation with 3-deoxy-d-arabino-heptulosonate 7-phosphate synthase for high activity. To explore the full potential of MtCM for catalyzing its native reaction, we applied diverse iterative cycles of mutagenesis and selection, thereby raising kcat/Km 270-fold to 5 × 105 m−1s−1, which is even higher than for the complex. Moreover, the evolutionarily optimized autonomous MtCM, which had 11 of its 90 amino acids exchanged, was stabilized compared with its progenitor, as indicated by a 9 °C increase in melting temperature. The 1.5 Å crystal structure of the top-evolved MtCM variant reveals the molecular underpinnings of this activity boost. Some acquired residues (e.g. Pro52 and Asp55) are conserved in naturally efficient CMs, but most of them lie beyond the active site. Our evolutionary trajectories reached a plateau at the level of the best natural enzymes, suggesting that we have exhausted the potential of MtCM. Taken together, these findings show that the scaffold of MtCM, which naturally evolved for mediocrity to enable inter-enzyme allosteric regulation of the shikimate pathway, is inherently capable of high activity.




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Hydrogen/deuterium exchange memory NMR reveals structural epitopes involved in IgE cross-reactivity of allergenic lipid transfer proteins [Protein Structure and Folding]

Identification of antibody-binding epitopes is crucial to understand immunological mechanisms. It is of particular interest for allergenic proteins with high cross-reactivity as observed in the lipid transfer protein (LTP) syndrome, which is characterized by severe allergic reactions. Art v 3, a pollen LTP from mugwort, is frequently involved in this cross-reactivity, but no antibody-binding epitopes have been determined so far. To reveal human IgE-binding regions of Art v 3, we produced three murine high-affinity mAbs, which showed 70–90% coverage of the allergenic epitopes from mugwort pollen–allergic patients. As reliable methods to determine structural epitopes with tightly interacting intact antibodies under native conditions are lacking, we developed a straightforward NMR approach termed hydrogen/deuterium exchange memory (HDXMEM). It relies on the slow exchange between the invisible antigen-mAb complex and the free 15N-labeled antigen whose 1H-15N correlations are detected. Due to a memory effect, changes of NH protection during antibody binding are measured. Differences in H/D exchange rates and analyses of mAb reactivity to homologous LTPs revealed three structural epitopes: two partially cross-reactive regions around α-helices 2 and 4 as well as a novel Art v 3–specific epitope at the C terminus. Protein variants with exchanged epitope residues confirmed the antibody-binding sites and revealed strongly reduced IgE reactivity. Using the novel HDXMEM for NMR epitope mapping allowed identification of the first structural epitopes of an allergenic pollen LTP. This knowledge enables improved cross-reactivity prediction for patients suffering from LTP allergy and facilitates design of therapeutics.




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Determinants of replication protein A subunit interactions revealed using a phosphomimetic peptide [Molecular Biophysics]

Replication protein A (RPA) is a eukaryotic ssDNA-binding protein and contains three subunits: RPA70, RPA32, and RPA14. Phosphorylation of the N-terminal region of the RPA32 subunit plays an essential role in DNA metabolism in processes such as replication and damage response. Phosphorylated RPA32 (pRPA32) binds to RPA70 and possibly regulates the transient RPA70-Bloom syndrome helicase (BLM) interaction to inhibit DNA resection. However, the structural details and determinants of the phosphorylated RPA32–RPA70 interaction are still unknown. In this study, we provide molecular details of the interaction between RPA70 and a mimic of phosphorylated RPA32 (pmRPA32) using fluorescence polarization and NMR analysis. We show that the N-terminal domain of RPA70 (RPA70N) specifically participates in pmRPA32 binding, whereas the unphosphorylated RPA32 does not bind to RPA70N. Our NMR data revealed that RPA70N binds pmRPA32 using a basic cleft region. We also show that at least 6 negatively charged residues of pmRPA32 are required for RPA70N binding. By introducing alanine mutations into hydrophobic positions of pmRPA32, we found potential points of contact between RPA70N and the N-terminal half of pmRPA32. We used this information to guide docking simulations that suggest the orientation of pmRPA32 in complex with RPA70N. Our study demonstrates detailed features of the domain-domain interaction between RPA70 and RPA32 upon phosphorylation. This result provides insight into how phosphorylation tunes transient bindings between RPA and its partners in DNA resection.




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Humanin selectively prevents the activation of pro-apoptotic protein BID by sequestering it into fibers [Protein Structure and Folding]

Members of the B-cell lymphoma (BCL-2) protein family regulate mitochondrial outer membrane permeabilization (MOMP), a phenomenon in which mitochondria become porous and release death-propagating complexes during the early stages of apoptosis. Pro-apoptotic BCL-2 proteins oligomerize at the mitochondrial outer membrane during MOMP, inducing pore formation. Of current interest are endogenous factors that can inhibit pro-apoptotic BCL-2 mitochondrial outer membrane translocation and oligomerization. A mitochondrial-derived peptide, Humanin (HN), was reported being expressed from an alternate ORF in the mitochondrial genome and inhibiting apoptosis through interactions with the pro-apoptotic BCL-2 proteins. Specifically, it is known to complex with BAX and BID. We recently reported the fibrillation of HN and BAX into β-sheets. Here, we detail the fibrillation between HN and BID. These fibers were characterized using several spectroscopic techniques, protease fragmentation with mass analysis, and EM. Enhanced fibrillation rates were detected with rising temperatures or pH values and the presence of a detergent. BID fibers are similar to those produced using BAX; however, the structures differ in final conformations of the BCL-2 proteins. BID fibers display both types of secondary structure in the fiber, whereas BAX was converted entirely to β-sheets. The data show that two distinct segments of BID are incorporated into the fiber structure, whereas other portions of BID remain solvent-exposed and retain helical structure. Similar analyses show that anti-apoptotic BCL-xL does not form fibers with humanin. These results support a general mechanism of sequestration of pro-apoptotic BCL-2 proteins into fibers by HN to inhibit MOMP.




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Molecular characterization of the RNA-protein complex directing -2/-1 programmed ribosomal frameshifting during arterivirus replicase expression [Protein Structure and Folding]

Programmed ribosomal frameshifting (PRF) is a mechanism used by arteriviruses like porcine reproductive and respiratory syndrome virus (PRRSV) to generate multiple proteins from overlapping reading frames within its RNA genome. PRRSV employs −1 PRF directed by RNA secondary and tertiary structures within its viral genome (canonical PRF), as well as a noncanonical −1 and −2 PRF that are stimulated by the interactions of PRRSV nonstructural protein 1β (nsp1β) and host protein poly(C)-binding protein (PCBP) 1 or 2 with the viral genome. Together, nsp1β and one of the PCBPs act as transactivators that bind a C-rich motif near the shift site to stimulate −1 and −2 PRF, thereby enabling the ribosome to generate two frameshift products that are implicated in viral immune evasion. How nsp1β and PCBP associate with the viral RNA genome remains unclear. Here, we describe the purification of the nsp1β:PCBP2:viral RNA complex on a scale sufficient for structural analysis using small-angle X-ray scattering and stochiometric analysis by analytical ultracentrifugation. The proteins associate with the RNA C-rich motif as a 1:1:1 complex. The monomeric form of nsp1β within the complex differs from previously reported homodimer identified by X-ray crystallography. Functional analysis of the complex via mutational analysis combined with RNA-binding assays and cell-based frameshifting reporter assays reveal a number of key residues within nsp1β and PCBP2 that are involved in complex formation and function. Our results suggest that nsp1β and PCBP2 both interact directly with viral RNA during formation of the complex to coordinate this unusual PRF mechanism.




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West Bank Annexation: International Rhetoric vs. Action

14 July 2020

Reni Zhelyazkova

Programme Coordinator, Middle East and North Africa Programme

Professor Yossi Mekelberg

Senior Consulting Research Fellow, Middle East and North Africa Programme
Israel may have delayed announcing its plans to annex West Bank lands but the international community now needs to transform its rhetoric into action if there is to be a lasting solution to the Israel-Palestine conflict, argue Reni Zhelyazkova and Yossi Mekelberg.

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Houses are pictured in the Maale Adumim settlement in the West Bank east of Jerusalem. The Israeli government has delayed plans to annex Jewish settlements in the West Bank and in the Jordan Valley. Photo: Getty Images

Observers of the Israel-Palestine conflict have been anticipating Israeli Prime Minister, Benjamin Netanyahu’s, announcement to annex parts of the West Bank. It has been a tumultuous year for Israeli politics which has seen three inconclusive elections and resulted in a sharing of power between Netanyahu and Benny Gantz of the Blue and White party. However, since the coalition government was sworn in, Netanyahu has appeared to not lose any time in moving forward with his plans.

Annexation has long been Netanyahu’s political aspiration and was part of his recent re-election platform but the anticipated announcement from the Israeli government didn’t come straight away. The determining factor in the delay was the inability to reach an agreement with Washington about the scope of the annexation while divisions within the Israeli government itself, in addition to international condemnation from the region and beyond, has also played a part.

Discussions around annexation have so far yielded one major outcome: it has introduced a different rhetoric by the Trump-Netanyahu axis even though things on the ground don’t necessarily follow. Ever since President Donald Trump took office in 2016, there has been a marked change in Washington’s language around the Israel-Palestine conflict. It has shifted towards legitimizing Israel’s expansionist ambitions in the West Bank while marginalizing, and considerably weakening, the Palestinian Authority (PA) through a series of punitive measures.

This has further damaged relations between Israel and Palestine and has resulted in a fundamental change in the public discourse around the conflict, from emphasizing a just solution based on self-determination for both sides, to focusing on a de-facto one-state solution.

But how has the discourse shifted so dramatically in less than four years? First came the announcement of the US embassy move to Jerusalem, and with it, recognition of the city as Israel’s capital. In his statement, President Trump avoided recognizing Palestinian claims over Jerusalem and did not acknowledge their historical connection with the city. When the PA rejected the move, the US administration then retaliated by cutting aid and development funding and closing the PLO mission in Washington stating: ‘We have permitted the PLO office to conduct operations that support the objective of achieving a lasting...peace between Israelis and the Palestinians … However, the PLO has not taken steps to advance the start of...meaningful negotiations with Israel.’

On the question of Israel’s settlements in the West Bank, the current US administration has shied away from calling them ‘illegal’ despite being deemed illegitimate under international law and condemned on numerous occasions by the UN Security Council, the UN General Assembly, the EU, the Arab League and the Palestinians themselves. US Secretary of State, Mike Pompeo, has even gone as far as saying that the establishment of Israeli settlements in the West Bank is not inconsistent with international law.

The culmination of US discourse in recent months has been the unveiling of the ‘Peace to Prosperity’ plan. The language of the proposal, once again, has shown partiality towards Israel by not mentioning the illegality of Israel’s occupation of the West Bank, or that of settlements, and entirely ignoring previous Palestinian positions or acknowledging their sensitivities. There is little doubt that the current US administration understands the power of rhetoric and has been using it to change the trajectory of discussions away from a two-state solution towards an outcome that would only serve Israeli interests.

Indeed, US rhetoric has empowered Netanyahu immensely too, ushering in a new reality that has rendered a Palestinian state nothing more than a hypothetical option. The language, combined with a multitude of unilateral actions, is helping to dismantle any efforts towards a two-state solution and the upholding of previous international agreements.

Many European and regional governments have condemned any move towards annexation. Indeed, 1,000 European parliamentarians from across political lines have urged Israel to abandon its plans. This has notably included, German Foreign Minister, Heiko Mass, whose first overseas visit during the coronavirus crisis was to Israel to reinforce Germany’s position against unilateral action.

But actions speak louder than words, and in the case of the US, its rhetoric has been matched by action unlike its EU counterparts whose statements of condemnation have rarely been followed by concrete action. For instance, the EU ratified a landmark aviation agreement with Israel just days before 1 July and economic, technological and scientific cooperation between Israel and Europe has never been stronger casting doubt on the strength of political will among EU countries to take action against Israel.

In the Middle East, the United Arab Emirates has been the most vociferous in disapproving Israel’s annexation plans. However, again, it is important to look beyond the rhetoric. Cooperation between the UAE and Israel has in fact increased in recent years mainly due to common opposition to Iran’s regional influence but also due to shared interests. In May, for instance, the first publicly acknowledged commercial flight between the UAE and Israel landed at Ben Gurion airport carrying aid aimed at mitigating the effects of COVID-19 in the Palestinian territories. But, to many, it looked like a stepping-stone towards a normalization of relations between Abu Dhabi and Jerusalem.

Similarly, Jordan and Egypt have also expressed their concern but it is difficult to imagine a scenario where either country would go as far as abrogating peace agreements that they currently have in place with Israel.

In spite of this, the global response has overwhelmingly been critical of Israel’s plans to annex parts of the West Bank. This has demonstrated some level of unity among world leaders which has not been seen for some time and may have played a significant role in delaying the Israeli government’s plans. In parallel, united international condemnation has also prevented the US from dominating the Israeli-Palestinian conflict entirely.

While the US approach has played a key role in the Israel-Palestine conflict so far, it remains to be seen how the international community will translate its voice into action to prevent the annexation of occupied Palestinian land.




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EU Budget Battle Could Undermine its International Ambitions

17 July 2020

Alice Billon-Galland

Research Associate, Europe Programme

Vassilis Ntousas

Stavros Niarchos Foundation Academy Fellow, Europe Programme
EU’s heated budget negotiations risk producing a compromise at the expense of its longer-term international agenda.

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German Chancellor Angela Merkel (L) talks with French President Emmanuel Macron (C) and President of European Council Charles Michel (R) during an EU summit on 17 July 2020 in Brussels, Belgium. Photo by Thierry Monasse/Getty Images.

With all EU economies still reeling from COVID-19, the ongoing heated deliberations on the bloc’s next budget, which will determine the amount of money matching its priorities for the next seven years, have taken on an urgency rarely felt in Brussels.

Relying in part on an unprecedentedly large volume of jointly issued debt, the European Commission’s plan for a €750 billion coronavirus recovery instrument is embedded within a revamped proposal for the EU’s long-term budget, of €1.1 trillion for the 2021-27 period. 

Now the ball is in the member states’ court. All seem to agree that getting the EU budget right is crucial to fostering an economic recovery and ensuring the Union is on the right track towards its long-term pre-COVID objectives, from increasing its strategic autonomy to reaching climate neutrality by 2050. However, stark differences persist as to what that means in practice.

Most of the core divisions predate the pandemic’s outbreak. In a special European Council meeting in February, leaders failed to find common ground on the Union’s first post-Brexit budget. Net contributor countries, such as Austria, Denmark, Sweden and the Netherlands — the so-called ‘Frugal Four’— refused to agree to higher overall spending and instead advocated for cuts in the Common Agricultural Policy or cohesion funds, meeting the resistance of states like France and Portugal.

These early divisions foreshadowed the risk of a budget compromise that would leave little space for new policy priorities. The COVID-induced economic crisis has made a traditionally fraught political process even more difficult, putting the squeeze on what were previously priority areas of funding.

The Frugal Four agree on the need for the coronavirus recovery plan but vehemently oppose the volume of grants or the issuance of too much common debt in the proposed instrument, reflecting the unpopularity of these proposals with their domestic audiences. Hungary has also threatened to derail progress on the EU’s rescue plan if rule of law criteria are weaved into mechanisms for the allocation of EU funding.

As European leaders reconvene at the 17-18 July Council meeting, EU Council President Michel proposed a revised 'negotiating box' in preparation for the discussions. The document, which tries to bridge these intra-bloc divisions, bolts the demands for short-term recovery onto the EU’s longer-term ambitions. For instance, it sets an increased target of 30 per cent of funding to go toward climate-related projects, which is necessary for the Union’s green transformation. It also retains the link between the rule of law and EU funding — despite Budapest’s opposition — which is critical for the bloc’s internal accountability and transparency, and external credibility. Furthermore, it proposes a set of new mechanisms through which the EU can sustainably raise its own revenue, including a plastics levy as well as more controversial carbon border tax and digital levy.

Yet in several other critical ways, Michel’s proposals fall short. This is particularly true for some of the more ‘geopolitical’ goals of the Union, as previously expressed by Commission president Ursula von der Leyen, or the repeated calls by the Union’s high representative that the EU should learn to use the language of power.

For all the rhetoric around the EU’s need to boost its ability to act more autonomously in the field of security and defence, reductions in important thematic programmes in this domain could result in a critical loss of momentum, if confirmed. For instance, in Michel’s proposals, flagship defence initiatives such as the European defence fund and the military mobility plan are facing cuts of about 39 per cent and 74 per cent respectively (to some €7 billion for the former and €1.5 billion for the latter) compared with the initial Commission proposal of 2018.

Moreover, the tragic developments at the Greece-Turkey border in the beginning of the year might have brought migration back to the forefront of the EU’s attention, but the overall funding for migration and border management is also significantly lower compared to initial proposals. This serves as another example of a discrepancy between the figures on the table today and those that the EU commission had previously regarded as necessary to address the challenges the bloc faces.

Similarly, under the Council president’s latest proposal, the combined funding allocated for the EU’s external action (under the ‘Neighbourhood and the World’ heading) is lower than the figures in the Commission’s May announcements – from €118.2 billion to €113.9 billion overall. This represents an increase compared to the previous EU budget, but it is not in line with the elevated ambitions recognized by the Commission in May, which have only been made more compelling by the pandemic.

Brokering a deal in EU budget negotiations has always been a brutal affair, requiring sacrifices and compromise under the pressure of a ticking clock. 2020 was never likely to be an exception to this rule; but the pandemic has complicated the politics and raised the stakes.

The risk is that the budget negotiations lead to a compromise which, while delivering a historic coronavirus package, does not adequately support some of the key elements of the Union’s long-term agenda, especially its international ambitions.