tei The crystal structure of Shethna protein II (FeSII) from Azotobacter vinelandii suggests a domain swap By journals.iucr.org Published On :: 2024-07-10 The Azotobacter vinelandii FeSII protein forms an oxygen-resistant complex with the nitrogenase MoFe and Fe proteins. FeSII is an adrenodoxin-type ferredoxin that forms a dimer in solution. Previously, the crystal structure was solved [Schlesier et al. (2016), J. Am. Chem. Soc. 138, 239–247] with five copies in the asymmetric unit. One copy is a normal adrenodoxin domain that forms a dimer with its crystallographic symmetry mate. The other four copies are in an `open' conformation with a loop flipped out exposing the 2Fe–2S cluster. The open and closed conformations were interpreted as oxidized and reduced, respectively, and the large conformational change in the open configuration allowed binding to nitrogenase. Here, the structure of FeSII was independently solved in the same crystal form. The positioning of the atoms in the unit cell is similar to the earlier report. However, the interpretation of the structure is different. The `open' conformation is interpreted as the product of a crystallization-induced domain swap. The 2Fe–2S cluster is not exposed to solvent, but in the crystal its interacting helix is replaced by the same helix residues from a crystal symmetry mate. The domain swap is complicated, as it is unusual in being in the middle of the protein rather than at a terminus, and it creates arrangements of molecules that can be interpreted in multiple ways. It is also cautioned that crystal structures should be interpreted in terms of the contents of the entire crystal rather than of one asymmetric unit. Full Article text
tei Structural analysis of a ligand-triggered intermolecular disulfide switch in a major latex protein from opium poppy By journals.iucr.org Published On :: 2024-08-29 Several proteins from plant pathogenesis-related family 10 (PR10) are highly abundant in the latex of opium poppy and have recently been shown to play diverse and important roles in the biosynthesis of benzylisoquinoline alkaloids (BIAs). The recent determination of the first crystal structures of PR10-10 showed how large conformational changes in a surface loop and adjacent β-strand are coupled to the binding of BIA compounds to the central hydrophobic binding pocket. A more detailed analysis of these conformational changes is now reported to further clarify how ligand binding is coupled to the formation and cleavage of an intermolecular disulfide bond that is only sterically allowed when the BIA binding pocket is empty. To decouple ligand binding from disulfide-bond formation, each of the two highly conserved cysteine residues (Cys59 and Cys155) in PR10-10 was replaced with serine using site-directed mutagenesis. Crystal structures of the Cys59Ser mutant were determined in the presence of papaverine and in the absence of exogenous BIA compounds. A crystal structure of the Cys155Ser mutant was also determined in the absence of exogenous BIA compounds. All three of these crystal structures reveal conformations similar to that of wild-type PR10-10 with bound BIA compounds. In the absence of exogenous BIA compounds, the Cys59Ser and Cys155Ser mutants appear to bind an unidentified ligand or mixture of ligands that was presumably introduced during expression of the proteins in Escherichia coli. The analysis of conformational changes triggered by the binding of BIA compounds suggests a molecular mechanism coupling ligand binding to the disruption of an intermolecular disulfide bond. This mechanism may be involved in the regulation of biosynthetic reactions in plants and possibly other organisms. Full Article text
tei Post-translational modifications in the Protein Data Bank By journals.iucr.org Published On :: 2024-08-29 Proteins frequently undergo covalent modification at the post-translational level, which involves the covalent attachment of chemical groups onto amino acids. This can entail the singular or multiple addition of small groups, such as phosphorylation; long-chain modifications, such as glycosylation; small proteins, such as ubiquitination; as well as the interconversion of chemical groups, such as the formation of pyroglutamic acid. These post-translational modifications (PTMs) are essential for the normal functioning of cells, as they can alter the physicochemical properties of amino acids and therefore influence enzymatic activity, protein localization, protein–protein interactions and protein stability. Despite their inherent importance, accurately depicting PTMs in experimental studies of protein structures often poses a challenge. This review highlights the role of PTMs in protein structures, as well as the prevalence of PTMs in the Protein Data Bank, directing the reader to accurately built examples suitable for use as a modelling reference. Full Article text
tei CHiMP: deep-learning tools trained on protein crystallization micrographs to enable automation of experiments By journals.iucr.org Published On :: 2024-10-01 A group of three deep-learning tools, referred to collectively as CHiMP (Crystal Hits in My Plate), were created for analysis of micrographs of protein crystallization experiments at the Diamond Light Source (DLS) synchrotron, UK. The first tool, a classification network, assigns images into categories relating to experimental outcomes. The other two tools are networks that perform both object detection and instance segmentation, resulting in masks of individual crystals in the first case and masks of crystallization droplets in addition to crystals in the second case, allowing the positions and sizes of these entities to be recorded. The creation of these tools used transfer learning, where weights from a pre-trained deep-learning network were used as a starting point and repurposed by further training on a relatively small set of data. Two of the tools are now integrated at the VMXi macromolecular crystallography beamline at DLS, where they have the potential to absolve the need for any user input, both for monitoring crystallization experiments and for triggering in situ data collections. The third is being integrated into the XChem fragment-based drug-discovery screening platform, also at DLS, to allow the automatic targeting of acoustic compound dispensing into crystallization droplets. Full Article text
tei Solving protein structures by combining structure prediction, molecular replacement and direct-methods-aided model completion By journals.iucr.org Published On :: 2024-01-13 Highly accurate protein structure prediction can generate accurate models of protein and protein–protein complexes in X-ray crystallography. However, the question of how to make more effective use of predicted models for completing structure analysis, and which strategies should be employed for the more challenging cases such as multi-helical structures, multimeric structures and extremely large structures, both in the model preparation and in the completion steps, remains open for discussion. In this paper, a new strategy is proposed based on the framework of direct methods and dual-space iteration, which can greatly simplify the pre-processing steps of predicted models both in normal and in challenging cases. Following this strategy, full-length models or the conservative structural domains could be used directly as the starting model, and the phase error and the model bias between the starting model and the real structure would be modified in the direct-methods-based dual-space iteration. Many challenging cases (from CASP14) have been tested for the general applicability of this constructive strategy, and almost complete models have been generated with reasonable statistics. The hybrid strategy therefore provides a meaningful scheme for X-ray structure determination using a predicted model as the starting point. Full Article text
tei Data reduction in protein serial crystallography By journals.iucr.org Published On :: 2024-02-08 Serial crystallography (SX) has become an established technique for protein structure determination, especially when dealing with small or radiation-sensitive crystals and investigating fast or irreversible protein dynamics. The advent of newly developed multi-megapixel X-ray area detectors, capable of capturing over 1000 images per second, has brought about substantial benefits. However, this advancement also entails a notable increase in the volume of collected data. Today, up to 2 PB of data per experiment could be easily obtained under efficient operating conditions. The combined costs associated with storing data from multiple experiments provide a compelling incentive to develop strategies that effectively reduce the amount of data stored on disk while maintaining the quality of scientific outcomes. Lossless data-compression methods are designed to preserve the information content of the data but often struggle to achieve a high compression ratio when applied to experimental data that contain noise. Conversely, lossy compression methods offer the potential to greatly reduce the data volume. Nonetheless, it is vital to thoroughly assess the impact of data quality and scientific outcomes when employing lossy compression, as it inherently involves discarding information. The evaluation of lossy compression effects on data requires proper data quality metrics. In our research, we assess various approaches for both lossless and lossy compression techniques applied to SX data, and equally importantly, we describe metrics suitable for evaluating SX data quality. Full Article text
tei Structural dissection of two redox proteins from the shipworm symbiont Teredinibacter turnerae By journals.iucr.org Published On :: 2024-03-01 The discovery of lytic polysaccharide monooxygenases (LPMOs), a family of copper-dependent enzymes that play a major role in polysaccharide degradation, has revealed the importance of oxidoreductases in the biological utilization of biomass. In fungi, a range of redox proteins have been implicated as working in harness with LPMOs to bring about polysaccharide oxidation. In bacteria, less is known about the interplay between redox proteins and LPMOs, or how the interaction between the two contributes to polysaccharide degradation. We therefore set out to characterize two previously unstudied proteins from the shipworm symbiont Teredinibacter turnerae that were initially identified by the presence of carbohydrate binding domains appended to uncharacterized domains with probable redox functions. Here, X-ray crystal structures of several domains from these proteins are presented together with initial efforts to characterize their functions. The analysis suggests that the target proteins are unlikely to function as LPMO electron donors, raising new questions as to the potential redox functions that these large extracellular multi-haem-containing c-type cytochromes may perform in these bacteria. Full Article text
tei KINNTREX: a neural network to unveil protein mechanisms from time-resolved X-ray crystallography By journals.iucr.org Published On :: 2024-04-25 Here, a machine-learning method based on a kinetically informed neural network (NN) is introduced. The proposed method is designed to analyze a time series of difference electron-density maps from a time-resolved X-ray crystallographic experiment. The method is named KINNTREX (kinetics-informed NN for time-resolved X-ray crystallography). To validate KINNTREX, multiple realistic scenarios were simulated with increasing levels of complexity. For the simulations, time-resolved X-ray data were generated that mimic data collected from the photocycle of the photoactive yellow protein. KINNTREX only requires the number of intermediates and approximate relaxation times (both obtained from a singular valued decomposition) and does not require an assumption of a candidate mechanism. It successfully predicts a consistent chemical kinetic mechanism, together with difference electron-density maps of the intermediates that appear during the reaction. These features make KINNTREX attractive for tackling a wide range of biomolecular questions. In addition, the versatility of KINNTREX can inspire more NN-based applications to time-resolved data from biological macromolecules obtained by other methods. Full Article text
tei Time-series analysis of rhenium(I) organometallic covalent binding to a model protein for drug development By journals.iucr.org Published On :: 2024-04-19 Metal-based complexes with their unique chemical properties, including multiple oxidation states, radio-nuclear capabilities and various coordination geometries yield value as potential pharmaceuticals. Understanding the interactions between metals and biological systems will prove key for site-specific coordination of new metal-based lead compounds. This study merges the concepts of target coordination with fragment-based drug methodologies, supported by varying the anomalous scattering of rhenium along with infrared spectroscopy, and has identified rhenium metal sites bound covalently with two amino acid types within the model protein. A time-based series of lysozyme-rhenium-imidazole (HEWL-Re-Imi) crystals was analysed systematically over a span of 38 weeks. The main rhenium covalent coordination is observed at His15, Asp101 and Asp119. Weak (i.e. noncovalent) interactions are observed at other aspartic, asparagine, proline, tyrosine and tryptophan side chains. Detailed bond distance comparisons, including precision estimates, are reported, utilizing the diffraction precision index supplemented with small-molecule data from the Cambridge Structural Database. Key findings include changes in the protein structure induced at the rhenium metal binding site, not observed in similar metal-free structures. The binding sites are typically found along the solvent-channel-accessible protein surface. The three primary covalent metal binding sites are consistent throughout the time series, whereas binding to neighbouring amino acid residues changes through the time series. Co-crystallization was used, consistently yielding crystals four days after setup. After crystal formation, soaking of the compound into the crystal over 38 weeks is continued and explains these structural adjustments. It is the covalent bond stability at the three sites, their proximity to the solvent channel and the movement of residues to accommodate the metal that are important, and may prove useful for future radiopharmaceutical development including target modification. Full Article text
tei RCSB Protein Data Bank: supporting research and education worldwide through explorations of experimentally determined and computationally predicted atomic level 3D biostructures By journals.iucr.org Published On :: 2024-04-10 The Protein Data Bank (PDB) was established as the first open-access digital data resource in biology and medicine in 1971 with seven X-ray crystal structures of proteins. Today, the PDB houses >210 000 experimentally determined, atomic level, 3D structures of proteins and nucleic acids as well as their complexes with one another and small molecules (e.g. approved drugs, enzyme cofactors). These data provide insights into fundamental biology, biomedicine, bioenergy and biotechnology. They proved particularly important for understanding the SARS-CoV-2 global pandemic. The US-funded Research Collaboratory for Structural Bioinformatics Protein Data Bank (RCSB PDB) and other members of the Worldwide Protein Data Bank (wwPDB) partnership jointly manage the PDB archive and support >60 000 `data depositors' (structural biologists) around the world. wwPDB ensures the quality and integrity of the data in the ever-expanding PDB archive and supports global open access without limitations on data usage. The RCSB PDB research-focused web portal at https://www.rcsb.org/ (RCSB.org) supports millions of users worldwide, representing a broad range of expertise and interests. In addition to retrieving 3D structure data, PDB `data consumers' access comparative data and external annotations, such as information about disease-causing point mutations and genetic variations. RCSB.org also provides access to >1 000 000 computed structure models (CSMs) generated using artificial intelligence/machine-learning methods. To avoid doubt, the provenance and reliability of experimentally determined PDB structures and CSMs are identified. Related training materials are available to support users in their RCSB.org explorations. Full Article text
tei Structural insights into the molecular mechanism of phytoplasma immunodominant membrane protein By journals.iucr.org Published On :: 2024-04-24 Immunodominant membrane protein (IMP) is a prevalent membrane protein in phytoplasma and has been confirmed to be an F-actin-binding protein. However, the intricate molecular mechanisms that govern the function of IMP require further elucidation. In this study, the X-ray crystallographic structure of IMP was determined and insights into its interaction with plant actin are provided. A comparative analysis with other proteins demonstrates that IMP shares structural homology with talin rod domain-containing protein 1 (TLNRD1), which also functions as an F-actin-binding protein. Subsequent molecular-docking studies of IMP and F-actin reveal that they possess complementary surfaces, suggesting a stable interaction. The low potential energy and high confidence score of the IMP–F-actin binding model indicate stable binding. Additionally, by employing immunoprecipitation and mass spectrometry, it was discovered that IMP serves as an interaction partner for the phytoplasmal effector causing phyllody 1 (PHYL1). It was then shown that both IMP and PHYL1 are highly expressed in the S2 stage of peanut witches' broom phytoplasma-infected Catharanthus roseus. The association between IMP and PHYL1 is substantiated through in vivo immunoprecipitation, an in vitro cross-linking assay and molecular-docking analysis. Collectively, these findings expand the current understanding of IMP interactions and enhance the comprehension of the interaction of IMP with plant F-actin. They also unveil a novel interaction pathway that may influence phytoplasma pathogenicity and host plant responses related to PHYL1. This discovery could pave the way for the development of new strategies to overcome phytoplasma-related plant diseases. Full Article text
tei From X-ray crystallographic structure to intrinsic thermodynamics of protein–ligand binding using carbonic anhydrase isozymes as a model system By journals.iucr.org Published On :: 2024-06-10 Carbonic anhydrase (CA) was among the first proteins whose X-ray crystal structure was solved to atomic resolution. CA proteins have essentially the same fold and similar active centers that differ in only several amino acids. Primary sulfonamides are well defined, strong and specific binders of CA. However, minor variations in chemical structure can significantly alter their binding properties. Over 1000 sulfonamides have been designed, synthesized and evaluated to understand the correlations between the structure and thermodynamics of their binding to the human CA isozyme family. Compound binding was determined by several binding assays: fluorescence-based thermal shift assay, stopped-flow enzyme activity inhibition assay, isothermal titration calorimetry and competition assay for enzyme expressed on cancer cell surfaces. All assays have advantages and limitations but are necessary for deeper characterization of these protein–ligand interactions. Here, the concept and importance of intrinsic binding thermodynamics is emphasized and the role of structure–thermodynamics correlations for the novel inhibitors of CA IX is discussed – an isozyme that is overexpressed in solid hypoxic tumors, and thus these inhibitors may serve as anticancer drugs. The abundant structural and thermodynamic data are assembled into the Protein–Ligand Binding Database to understand general protein–ligand recognition principles that could be used in drug discovery. Full Article text
tei Benchmarking predictive methods for small-angle X-ray scattering from atomic coordinates of proteins using maximum likelihood consensus data By journals.iucr.org Published On :: 2024-07-10 Stimulated by informal conversations at the XVII International Small Angle Scattering (SAS) conference (Traverse City, 2017), an international team of experts undertook a round-robin exercise to produce a large dataset from proteins under standard solution conditions. These data were used to generate consensus SAS profiles for xylose isomerase, urate oxidase, xylanase, lysozyme and ribonuclease A. Here, we apply a new protocol using maximum likelihood with a larger number of the contributed datasets to generate improved consensus profiles. We investigate the fits of these profiles to predicted profiles from atomic coordinates that incorporate different models to account for the contribution to the scattering of water molecules of hydration surrounding proteins in solution. Programs using an implicit, shell-type hydration layer generally optimize fits to experimental data with the aid of two parameters that adjust the volume of the bulk solvent excluded by the protein and the contrast of the hydration layer. For these models, we found the error-weighted residual differences between the model and the experiment generally reflected the subsidiary maxima and minima in the consensus profiles that are determined by the size of the protein plus the hydration layer. By comparison, all-atom solute and solvent molecular dynamics (MD) simulations are without the benefit of adjustable parameters and, nonetheless, they yielded at least equally good fits with residual differences that are less reflective of the structure in the consensus profile. Further, where MD simulations accounted for the precise solvent composition of the experiment, specifically the inclusion of ions, the modelled radius of gyration values were significantly closer to the experiment. The power of adjustable parameters to mask real differences between a model and the structure present in solution is demonstrated by the results for the conformationally dynamic ribonuclease A and calculations with pseudo-experimental data. This study shows that, while methods invoking an implicit hydration layer have the unequivocal advantage of speed, care is needed to understand the influence of the adjustable parameters. All-atom solute and solvent MD simulations are slower but are less susceptible to false positives, and can account for thermal fluctuations in atomic positions, and more accurately represent the water molecules of hydration that contribute to the scattering profile. Full Article text
tei Comprehensive encoding of conformational and compositional protein structural ensembles through the mmCIF data structure By journals.iucr.org Published On :: 2024-06-25 In the folded state, biomolecules exchange between multiple conformational states crucial for their function. However, most structural models derived from experiments and computational predictions only encode a single state. To represent biomolecules accurately, we must move towards modeling and predicting structural ensembles. Information about structural ensembles exists within experimental data from X-ray crystallography and cryo-electron microscopy. Although new tools are available to detect conformational and compositional heterogeneity within these ensembles, the legacy PDB data structure does not robustly encapsulate this complexity. We propose modifications to the macromolecular crystallographic information file (mmCIF) to improve the representation and interrelation of conformational and compositional heterogeneity. These modifications will enable the capture of macromolecular ensembles in a human and machine-interpretable way, potentially catalyzing breakthroughs for ensemble–function predictions, analogous to the achievements of AlphaFold with single-structure prediction. Full Article text
tei Many locks to one key: N-acetylneuraminic acid binding to proteins By journals.iucr.org Published On :: 2024-07-04 Sialic acids play crucial roles in cell surface glycans of both eukaryotic and prokaryotic organisms, mediating various biological processes, including cell–cell interactions, development, immune response, oncogenesis and host–pathogen interactions. This review focuses on the β-anomeric form of N-acetylneuraminic acid (Neu5Ac), particularly its binding affinity towards various proteins, as elucidated by solved protein structures. Specifically, we delve into the binding mechanisms of Neu5Ac to proteins involved in sequestering and transporting Neu5Ac in Gram-negative bacteria, with implications for drug design targeting these proteins as antimicrobial agents. Unlike the initial assumptions, structural analyses revealed significant variability in the Neu5Ac binding pockets among proteins, indicating diverse evolutionary origins and binding modes. By comparing these findings with existing structures from other systems, we can effectively highlight the intricate relationship between protein structure and Neu5Ac recognition, emphasizing the need for tailored drug design strategies to inhibit Neu5Ac-binding proteins across bacterial species. Full Article text
tei Waterless structures in the Protein Data Bank By journals.iucr.org Published On :: 2024-10-28 The absence of solvent molecules in high-resolution protein crystal structure models deposited in the Protein Data Bank (PDB) contradicts the fact that, for proteins crystallized from aqueous media, water molecules are always expected to bind to the protein surface, as well as to some sites in the protein interior. An analysis of the contents of the PDB indicated that the expected ratio of the number of water molecules to the number of amino-acid residues exceeds 1.5 in atomic resolution structures, decreasing to 0.25 at around 2.5 Å resolution. Nevertheless, almost 800 protein crystal structures determined at a resolution of 2.5 Å or higher are found in the current release of the PDB without any water molecules, whereas some other depositions have unusually low or high occupancies of modeled solvent. Detailed analysis of these depositions revealed that the lack of solvent molecules might be an indication of problems with either the diffraction data, the refinement protocol, the deposition process or a combination of these factors. It is postulated that problems with solvent structure should be flagged by the PDB and addressed by the depositors. Full Article text
tei FLEXR GUI: a graphical user interface for multi-conformer modeling of proteins By journals.iucr.org Published On :: 2024-03-27 Proteins are well known `shapeshifters' which change conformation to function. In crystallography, multiple conformational states are often present within the crystal and the resulting electron-density map. Yet, explicitly incorporating alternative states into models to disentangle multi-conformer ensembles is challenging. We previously reported the tool FLEXR, which, within a few minutes, automatically separates conformational signal from noise and builds the corresponding, often missing, structural features into a multi-conformer model. To make the method widely accessible for routine multi-conformer building as part of the computational toolkit for macromolecular crystallography, we present a graphical user interface (GUI) for FLEXR, designed as a plugin for Coot 1. The GUI implementation seamlessly connects FLEXR models with the existing suite of validation and modeling tools available in Coot. We envision that FLEXR will aid crystallographers by increasing access to a multi-conformer modeling method that will ultimately lead to a better representation of protein conformational heterogeneity in the Protein Data Bank. In turn, deeper insights into the protein conformational landscape may inform biology or provide new opportunities for ligand design. The code is open source and freely available on GitHub at https://github.com/TheFischerLab/FLEXR-GUI. Full Article text
tei Humans may be uniquely identified by the proteins in their hair By esciencenews.com Published On :: Wed, 07 Sep 2016 19:44:06 +0000 Unique protein markers in hair could be used alongside DNA profiling for human identification, according to a study published September 7, 2016 in the open-access journal PLOS ONE by Glendon Parker from Lawrence Livermore National Laboratory, USA, and colleagues. read more Full Article Biology & Nature
tei The proteins that domesticated our genomes By esciencenews.com Published On :: Wed, 08 Mar 2017 20:57:24 +0000 EPFL scientists have carried out a genomic and evolutionary study of a large and enigmatic family of human proteins, to demonstrate that it is responsible for harnessing the millions of transposable elements in the human genome. The work reveals the largely species-specific gene-regulatory networks that impact all of human biology, in both health and disease. read more Full Article Biology & Nature
tei Edible food packaging made from milk proteins (video) By esciencenews.com Published On :: Mon, 22 Aug 2016 14:15:07 +0000 At the grocery store, most foods -- meats, breads, cheeses, snacks -- come wrapped in plastic packaging. Not only does this create a lot of non-recyclable, non-biodegradable waste, but thin plastic films are not great at preventing spoilage. And some plastics are suspected of leaching potentially harmful compounds into food. To address these issues, scientists are now developing a packaging film made of milk proteins -- and it is even edible. read more Full Article Mathematics & Economics
tei Eggo debuts protein-packed waffles, custom sneakers By www.snackandbakery.com Published On :: Fri, 17 May 2024 12:00:00 -0400 New Eggo Fully Loaded Waffles inspired Eggo's collab with The Surgeon to drop the first-ever Eggo Fully Loaded Kicks in two colorways: Chocolate Chip Brownie and Strawberry Delight. Full Article
tei Bobo's launches line of protein bars By www.snackandbakery.com Published On :: Wed, 11 Jan 2023 00:00:00 -0500 The company's new protein bars are made with real nut butter, honey, and dates. Full Article
tei Premier Nutrition launches protein pancake, waffle mix By www.snackandbakery.com Published On :: Tue, 18 Jun 2024 13:00:00 -0400 Available in both Buttermilk and Original varieties, the pancake mixes have 15 grams of protein per serving and can be made by just adding water. Full Article
tei Pure Protein debuts Sweet Chili Popped Crisps By www.snackandbakery.com Published On :: Mon, 12 Feb 2024 15:40:00 -0500 Sweet Chili Popped Crisps are now available on Amazon alongside the brand’s protein-packed Hickory Barbeque Popped Crisps, Sour Cream & Onion Popped Crisps, and savory Cheesy Crackers. Full Article
tei Case Study: EverGrain's large-scale protein facility uses Pall Corporation's filtration technology By www.snackandbakery.com Published On :: Tue, 19 Jul 2022 10:40:00 -0400 Pall Membralox Microfiltration System equipped with ceramic membranes with gradient permeability technology plays a critical role in purifying valuable protein. Full Article
tei Whey Better Cookie Co. protein cheesecake line By www.snackandbakery.com Published On :: Mon, 03 Jan 2022 15:00:00 -0500 Whey Better Cookie Co. is expanding its dessert line to add mini protein cheesecakes. Full Article
tei Ingredion launches pea protein optimized for bars By www.snackandbakery.com Published On :: Tue, 16 Jul 2024 16:30:00 -0400 The new solution provides preferred texture and sensory attributes, and adds nutritional value to boost consumer preference. Full Article
tei Protein meets whole foods in new Arla bar concept By www.snackandbakery.com Published On :: Tue, 15 Oct 2024 18:00:00 -0400 Arla Foods Ingredients has launched a new concept for high-protein bars with a natural positioning. Full Article
tei Bob's Natural debuts protein-packed Pinole Chips By www.snackandbakery.com Published On :: Wed, 03 Jan 2024 11:15:00 -0500 Bob’s Natural has introduced Pinole Chips, featuring the super-power of Pinole—an organic corn treated with lime—chia seeds, and dates. Full Article
tei Ingredion, InnovoPro sign commercial distribution partnership to scale chickpea proteins By www.snackandbakery.com Published On :: Tue, 29 Nov 2022 14:50:00 -0500 Exclusive partnership will scale next generation chickpea proteins for North America. Full Article
tei Ghost elevates breakfast game with high-protein cereal By www.snackandbakery.com Published On :: Thu, 11 Apr 2024 16:40:00 -0400 Ghost, a lifestyle brand of sports nutrition products, energy drinks, and more, is entering the food category with a high-protein cereal line that was built in partnership with General Mills. Full Article
tei Equii Complete Protein Breads hit Hy-Vee shelves By www.snackandbakery.com Published On :: Mon, 10 Jun 2024 09:39:00 -0400 The products are now being sold at 88 retail locations around the Midwest. Full Article
tei PoLoPo, CSM Ingredients partner on egg-free egg protein By www.snackandbakery.com Published On :: Thu, 31 Oct 2024 12:28:00 -0400 The two entities are working together to commercialize egg-free ovalbumin for baking and other applications. Full Article
tei ALDI new protein bread, keto tortillas, organic bread, and brioche buns By www.snackandbakery.com Published On :: Fri, 29 Oct 2021 15:45:00 -0400 Full Article
tei AMCO Proteins launches clean-label dough conditioner By www.snackandbakery.com Published On :: Mon, 18 Nov 2019 10:00:00 -0500 AMCO Proteins has launched HG-80, an all-natural plant-based dough conditioner that reduces mix time. Full Article
tei Givaudan publishes insights from Chef's Council 2019, announces new fat encapsulation technology for plant protein By www.snackandbakery.com Published On :: Thu, 21 Nov 2019 08:00:00 -0500 Givaudan has published initial insights and the first commercial innovation inspired by the fifth savory edition of its global Chef’s Council event – The Protein Challenge. Full Article
tei Parabel announces first natural plant source of Vitamin B12 in water lentils and LENTEIN plant protein By www.snackandbakery.com Published On :: Tue, 26 Nov 2019 13:00:00 -0500 Parabel USA Inc, producer of plant protein ingredients, has announced the discovery of a natural plant-based source of Vitamin B12 in its water lentil crop. Full Article
tei MGP launches ProTerra textured proteins By www.snackandbakery.com Published On :: Thu, 09 Apr 2020 09:00:00 -0400 MGP Ingredients has announced the ProTerra line of textured proteins. Full Article
tei Ocean-based super protein By www.snackandbakery.com Published On :: Tue, 09 Jun 2020 08:00:00 -0400 Advance International Inc. has introduced a premium, ultra-sustainable & highly nutritious ocean-based super-protein that will revolutionize the global supply chain. Full Article
tei ADM, InnovaFeed announce construction of world's largest insect protein facility in Decatur, Illinois By www.snackandbakery.com Published On :: Thu, 26 Nov 2020 15:00:00 -0500 ADM and InnovaFeed have announced plans to collaborate on the construction and operation of the world’s largest insect protein production site, in Decatur, Illinois. Full Article
tei Herbalife Nutrition Protein Baked Goods Mix By www.snackandbakery.com Published On :: Tue, 09 Feb 2021 11:00:00 -0500 Herbalife Nutrition (NYSE: HLF), a premier global nutrition company, has launched Protein Baked Goods Mix, officially entering the baked goods category. Full Article
tei Lenny & Larry's unveils new 18G Protein Cookie and Boss Up! challenge By www.snackandbakery.com Published On :: Sat, 20 Feb 2021 12:00:00 -0500 Lenny & Larry's, is proud to announce the introduction of their newest, 18G—as in 18 grams of protein—cookie: Lenny & Larry's The Boss! Cookie Full Article
tei ChickP goes commercial with novel protein By www.snackandbakery.com Published On :: Tue, 02 Mar 2021 08:00:00 -0500 FoodTech start-up ChickP Protein, Ltd. has announced full commercial production of its 90 percent chickpea isolate. Full Article
tei Two ingredients added to production line at new Ingredion pea protein facility By www.snackandbakery.com Published On :: Sun, 07 Mar 2021 09:00:00 -0500 Ingredion Incorporated has announced two new additions to its plant-based portfolio produced at the Company’s new pea protein manufacturing facility in South Sioux City, Nebraska—VITESSENCE Pulse 1853 pea protein isolate and PURITY P 1002 pea starch. Full Article
tei Ingredion VITESSENCE TEX Crumbles 102 texture protein, to optimize texture and firmness in plant-based meat products By www.snackandbakery.com Published On :: Thu, 22 Jul 2021 14:15:00 -0400 Ingredion Incorporated has announced a new addition to its extensive range of plant-based solutions for the U.S. and Canada, VITESSENCE TEX Crumbles 102 textured protein. Full Article
tei Merit Functional Foods' Manitoba facility for pea and canola proteins opens By www.snackandbakery.com Published On :: Wed, 10 Nov 2021 12:43:00 -0500 Merit Functional Foods, a solutions-based plant protein company, is pleased to announce that its new 94,000 square-foot facility in Winnipeg, Manitoba, is fully scaled to supply food and beverage customers with the highest purity pea and canola proteins available for use in plant-based applications. Full Article
tei Gold&Green Foods introduces protein granules and flakes By www.snackandbakery.com Published On :: Tue, 07 Dec 2021 15:54:00 -0500 The Finnish food tech company Gold&Green Foods is expanding beyond the meat replacement category with the launch of Gold&Green Protein Granules and Protein Flakes. Full Article
tei Burcon receives co-investment from Protein Industries Canada By www.snackandbakery.com Published On :: Fri, 22 Apr 2022 09:00:00 -0400 Burcon NutraScience Corporation is pleased to announce that it has received a co-investment from Proteins Industries Canada for the development of high-quality protein ingredients from sunflower seeds. Full Article
tei Equinom achieves 75% protein content in minimally processed pea protein By www.snackandbakery.com Published On :: Tue, 21 Jun 2022 09:00:00 -0400 Food tech company breaks industry record and validates potential of advanced pea protein ingredient for plant-based food and beverage market. Full Article
tei Upcycled Foods Inc. partners with Kerry, releases upcycled protein crisp By www.snackandbakery.com Published On :: Mon, 11 Jul 2022 10:05:00 -0400 Innovators collaborate to design upcycled ingredient solutions for food industry. Full Article