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CBD News: The Secretariat of Convention on Biological Diversity (CBD) today released a new publication titled "Guidelines for tourism partnerships and concessions for protected areas: generating sustainable revenues for conservation and development.&




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CBD News: With the Democratic Republic of the Congo depositing its instrument of accession on 4 October 2017, the Nagoya-Kuala Lumpur Supplementary Protocol on Liability and Redress to the Cartagena Protocol on Biosafety needs only one more instrument of




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CBD News: The international community has long recognized the interdependence of all countries with regard to plant genetic resources for food and agriculture and their relevance to FAO as well as the Convention on Biological Diversity (CBD) and its Nagoy




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CBD News: The Secretariat of the Convention on Biological Diversity and the International Development Law Organization renewed their collaboration for a joint capacity building program to support the implementation of the Nagoya Protocol on Access to Gene




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CBD News: Dr. Cristiana Pasca Palmer, UN Assistant Secretary-General and Executive Secretary of the Convention on Biological Diversity, hosted a breakfast discussion on 16 November 2017 on the margins of the 23rd session of the Conference of the Parties t




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CBD News: The Nagoya-Kuala Lumpur Supplementary Protocol on Liability and Redress to the Cartagena Protocol on Biosafety, following the deposit of the instrument of acceptance by Japan on 5 December 2017, will enter into force on 5 March 2018.




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CBD News: The science body under the Convention on Biological Diversity (CBD) meets this week to discuss a wide array of biodiversity-related issues critical for achieving the 2030 Agenda for Sustainable Development and tackling climate change. These dis




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CBD News: Delegates to the tenth meeting of the Ad Hoc Open-ended Working Group on Article 8(j) and Related Provisions of the Convention on Biological Diversity agreed on a set of recommendations related to the contributions of indigenous peoples and loca




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CBD News: The Nagoya-Kuala Lumpur Supplementary Protocol on Liability and Redress to the Cartagena Protocol on Biosafety enters into force today, 5 March 2018.




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CBD News: For this year's International Women's Day, I join my voice to the call to action to empower women in all settings, rural and urban, and to draw inspiration from the activists working to achieve women's rights and gender equality.




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CBD News: Statement of the Executive Secretary of the Convention on Biological Diversity, Cristiana Pasca Palmer, on the occasion of the Seventeenth Session of the United Nations Permanent Forum on Indigenous Issues, United Nations Headquarters, 16 to 27




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CBD News: The rich variety of life on Earth is essential for the welfare and prosperity of people today and for generations to come.




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CBD News: No matter where we live, every other breath we take comes from the Ocean's breath - from the oxygen produced by its phytoplankton and its rich marine plant life.




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CBD News: A Memorandum of Cooperation (MoC) geared towards enhancing cooperation between the Secretariats of the Convention on Biological Diversity (CBD) and the FAO International Treaty on Plant Genetic Resources for Food and Agriculture was signed today




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CBD News: Inspired by discussions on the possibilities of transformational change, a keynote address by Canadian astronaut Roberta Bondar, and a celebration of indigenous culture, more than 1,000 delegates from around the world concluded two critical meet




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CBD News: Germany has published the first report on the utilization of genetic resources through the Access and Benefit-sharing (ABS) Clearing-House by issuing a checkpoint communiqué concerning research on ants from South Africa. This was rapidly fo




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CBD News: Fifteen years ago, the Cartagena Protocol on Biosafety to the Convention on Biological Diversity entered into force aiming to ensure the safe handling, transfer and use of living modified organisms (or LMOs) resulting from modern biotechnology.




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CBD News: African Ministers of Environment together with partner organizations committed to an ambitious action agenda taking a coherent approach to addressing the interlinked challenges of biodiversity loss, land degradation and climate change.




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CBD News: Statement of the Executive Secretary of the Convention on Biological Diversity, Dr. Cristiana Pasca Palmer, Assistant-Secretary-General of the United Nations, on the occasion of the Official Launch of the 2019 International Year of Indigenous La




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CBD News: Opening statement by Ms. Cristiana Pasca Palmer, Executive Secretary of the Convention on Biological Diversity, on the occasion of the eighteenth session of the United Nations Permanent Forum on Indigenous Issues, United Nations Headquarters, Ne




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CBD News: Message from the Executive Secretary of the Convention on Biological Diversity, Dr. Cristiana Pasca Palmer, on the occasion of the World Oceans Day, 8 June 2019: "Gender and the Ocean".




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CBD News: Presentation by Dr. Cristiana Pasca Palmer, UN Assistant Secretary-General, Executive Secretary of UN Biodiversity Convention, for EU Environmental ministerial, Helsinki, Finland, July 11 2019




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CBD News: Statement of the Executive Secretary of the Convention on Biological Diversity, Dr. Cristiana Pasca Palmer, UN Assistant Secretary-General, on the occasion of the International Day of the World's Indigenous Peoples




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CBD News: This year's World Cities Day theme, "Changing the world: innovations and better life for future generations", focuses on how urban governance can be used to achieve sustainable development.




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CBD Notification SCBD/SSSF/AS/JS/TMC/VA/88505 (2019-106): Survey on Progress in Implementation of the 2015-2020 Gender Plan of Action




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CBD News: A new guide now available, Addressing Gender Issues and Actions in Biodiversity Objectives, provides biodiversity professionals concrete ideas and actions for progress in their work towards achieving gender and biodiversity objectives, goals and




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CBD Notification SCBD/CPU/DC/KG/PD/PS/88522 (2019-110): Review of post-2020 Implementation Plan and Capacity-building Action Plan (Cartagena Protocol on Biosafety)




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CBD News: The nature that surrounds us, sustains us. Ensuring that it can continue to do so for future generations is a trust bestowed on us all.




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CBD Notification SCBD/SSSF/AS/JS/TM/88584 (2020-003): Selected representatives of indigenous peoples and local communities to receive funding from the Voluntary Trust Fund for participation in the second meeting of the Open-ended Working Group on the Post




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CBD Notification SCBD/NPU/DC/WY/BG/RKi/88360 (2020-012): Survey on pathogen sharing, including for influenza, and access and benefit-sharing arrangements




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CBD News: Twenty years ago, on 29 January 2000, Parties to the Convention on Biological Diversity (CBD) adopted the Cartagena Protocol on Biosafety. The Cartagena Protocol entered into force on 11 September 2003.





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A linearly convergent majorized ADMM with indefinite proximal terms for convex composite programming and its applications

Ning Zhang, Jia Wu and Liwei Zhang
Math. Comp. 89 (2020), 1867-1894.
Abstract, references and article information




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Uniqueness for the inverse boundary value problem of piecewise homogeneous anisotropic elasticity in the time domain

Cătălin I. Cârstea, Gen Nakamura and Lauri Oksanen
Trans. Amer. Math. Soc. 373 (2020), 3423-3443.
Abstract, references and article information




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Equidistribution on homogeneous spaces and the distribution of approximates in Diophantine approximation

Mahbub Alam and Anish Ghosh
Trans. Amer. Math. Soc. 373 (2020), 3357-3374.
Abstract, references and article information




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Estimation of the rate of convergence in the central limit theorem for a sequence of series in terms of averaged pseudomoments

M. M. Kapustei and P. V. Slyusarchuk
Theor. Probability and Math. Statist. 99 (2020), 101-111.
Abstract, references and article information




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Corrigendum to “The Łojasiewicz exponent of a continuous subanalytic function at an isolated zero”

Phạm Tiến Sơn
Proc. Amer. Math. Soc. 148 (2020), 2739-2741.
Abstract, references and article information






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Tech unicorns ask chancellor for access to emergency loans

The 'unicorn letter', sent by some of the best-funded private technology companies in the country, asks the chancellor to form an urgent taskforce to give them access to government-backed lending schemes during the pandemic




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One-Dimensional General Forest Fire Processes

Xavier Bressaud, Universite Paul Sabatier, and Nicolas Fournier, Universite Paris-Est - A publication of the Societe Mathematique de France, 2013, 138 pp., Softcover, ISBN-13: 978-2-85629-765-0, List: US$48, All AMS Members: US$38.40, SMFMEM/132

The authors consider the one-dimensional generalized forest fire process: at each site of (mathbb{Z}), seeds and matches fall according to i.i.d....




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Correction: Mitochondrial and nuclear genomic responses to loss of LRPPRC expression. [Additions and Corrections]

VOLUME 285 (2010) PAGES 13742–13747In Fig. 1E, passage 10, the splicing of a non-adjacent lane from the same immunoblot was not marked. This error has now been corrected and does not affect the results or conclusions of this work.jbc;295/16/5533/F1F1F1Figure 1E.




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Inhibition of the erythropoietin-producing receptor EPHB4 antagonizes androgen receptor overexpression and reduces enzalutamide resistance [Molecular Bases of Disease]

Prostate cancer (PCa) cells heavily rely on an active androgen receptor (AR) pathway for their survival. Enzalutamide (MDV3100) is a second-generation antiandrogenic drug that was approved by the Food and Drug Administration in 2012 to treat patients with castration-resistant prostate cancer (CRPC). However, emergence of resistance against this drug is inevitable, and it has been a major challenge to develop interventions that help manage enzalutamide-resistant CRPC. Erythropoietin-producing human hepatocellular (Eph) receptors are targeted by ephrin protein ligands and have a broad range of functions. Increasing evidence indicates that this signaling pathway plays an important role in tumorigenesis. Overexpression of EPH receptor B4 (EPHB4) has been observed in multiple types of cancer, being closely associated with proliferation, invasion, and metastasis of tumors. Here, using RNA-Seq analyses of clinical and preclinical samples, along with several biochemical and molecular methods, we report that enzalutamide-resistant PCa requires an active EPHB4 pathway that supports drug resistance of this tumor type. Using a small kinase inhibitor and RNAi-based gene silencing to disrupt EPHB4 activity, we found that these disruptions re-sensitize enzalutamide-resistant PCa to the drug both in vitro and in vivo. Mechanistically, we found that EPHB4 stimulates the AR by inducing proto-oncogene c-Myc (c-Myc) expression. Taken together, these results provide critical insight into the mechanism of enzalutamide resistance in PCa, potentially offering a therapeutic avenue for enhancing the efficacy of enzalutamide to better manage this common malignancy.




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The transcriptional regulator MEIS2 sets up the ground state for palatal osteogenesis in mice [Gene Regulation]

Haploinsufficiency of Meis homeobox 2 (MEIS2), encoding a transcriptional regulator, is associated with human cleft palate, and Meis2 inactivation leads to abnormal palate development in mice, implicating MEIS2 functions in palate development. However, its functional mechanisms remain unknown. Here we observed widespread MEIS2 expression in the developing palate in mice. Wnt1Cre-mediated Meis2 inactivation in cranial neural crest cells led to a secondary palate cleft. Importantly, about half of the Wnt1Cre;Meis2f/f mice exhibited a submucous cleft, providing a model for studying palatal bone formation and patterning. Consistent with complete absence of palatal bones, the results from integrative analyses of MEIS2 by ChIP sequencing, RNA-Seq, and an assay for transposase-accessible chromatin sequencing identified key osteogenic genes regulated directly by MEIS2, indicating that it plays a fundamental role in palatal osteogenesis. De novo motif analysis uncovered that the MEIS2-bound regions are highly enriched in binding motifs for several key osteogenic transcription factors, particularly short stature homeobox 2 (SHOX2). Comparative ChIP sequencing analyses revealed genome-wide co-occupancy of MEIS2 and SHOX2 in addition to their colocalization in the developing palate and physical interaction, suggesting that SHOX2 and MEIS2 functionally interact. However, although SHOX2 was required for proper palatal bone formation and was a direct downstream target of MEIS2, Shox2 overexpression failed to rescue the palatal bone defects in a Meis2-mutant background. These results, together with the fact that Meis2 expression is associated with high osteogenic potential and required for chromatin accessibility of osteogenic genes, support a vital function of MEIS2 in setting up a ground state for palatal osteogenesis.




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The transcriptional regulator IscR integrates host-derived nitrosative stress and iron starvation in activation of the vvhBA operon in Vibrio vulnificus [Gene Regulation]

For successful infection of their hosts, pathogenic bacteria recognize host-derived signals that induce the expression of virulence factors in a spatiotemporal manner. The fulminating food-borne pathogen Vibrio vulnificus produces a cytolysin/hemolysin protein encoded by the vvhBA operon, which is a virulence factor preferentially expressed upon exposure to murine blood and macrophages. The Fe-S cluster containing transcriptional regulator IscR activates the vvhBA operon in response to nitrosative stress and iron starvation, during which the cellular IscR protein level increases. Here, electrophoretic mobility shift and DNase I protection assays revealed that IscR directly binds downstream of the vvhBA promoter PvvhBA, which is unusual for a positive regulator. We found that in addition to IscR, the transcriptional regulator HlyU activates vvhBA transcription by directly binding upstream of PvvhBA, whereas the histone-like nucleoid-structuring protein (H-NS) represses vvhBA by extensively binding to both downstream and upstream regions of its promoter. Of note, the binding sites of IscR and HlyU overlapped with those of H-NS. We further substantiated that IscR and HlyU outcompete H-NS for binding to the PvvhBA regulatory region, resulting in the release of H-NS repression and vvhBA induction. We conclude that concurrent antirepression by IscR and HlyU at regions both downstream and upstream of PvvhBA provides V. vulnificus with the means of integrating host-derived signal(s) such as nitrosative stress and iron starvation for precise regulation of vvhBA transcription, thereby enabling successful host infection.




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12-LOX catalyzes the oxidation of 2-arachidonoyl-lysolipids in platelets generating eicosanoid-lysolipids that are attenuated by iPLA2{gamma} knockout [Signal Transduction]

The canonical pathway of eicosanoid production in most mammalian cells is initiated by phospholipase A2-mediated release of arachidonic acid, followed by its enzymatic oxidation resulting in a vast array of eicosanoid products. However, recent work has demonstrated that the major phospholipase in mitochondria, iPLA2γ (patatin-like phospholipase domain containing 8 (PNPLA8)), possesses sn-1 specificity, with polyunsaturated fatty acids at the sn-2 position generating polyunsaturated sn-2-acyl lysophospholipids. Through strategic chemical derivatization, chiral chromatographic separation, and multistage tandem MS, here we first demonstrate that human platelet-type 12-lipoxygenase (12-LOX) can directly catalyze the regioselective and stereospecific oxidation of 2-arachidonoyl-lysophosphatidylcholine (2-AA-LPC) and 2-arachidonoyl-lysophosphatidylethanolamine (2-AA-LPE). Next, we identified these two eicosanoid-lysophospholipids in murine myocardium and in isolated platelets. Moreover, we observed robust increases in 2-AA-LPC, 2-AA-LPE, and their downstream 12-LOX oxidation products, 12(S)-HETE-LPC and 12(S)-HETE-LPE, in calcium ionophore (A23187)-stimulated murine platelets. Mechanistically, genetic ablation of iPLA2γ markedly decreased the calcium-stimulated production of 2-AA-LPC, 2-AA-LPE, and 12-HETE-lysophospholipids in mouse platelets. Importantly, a potent and selective 12-LOX inhibitor, ML355, significantly inhibited the production of 12-HETE-LPC and 12-HETE-LPE in activated platelets. Furthermore, we found that aging is accompanied by significant changes in 12-HETE-LPC in murine serum that were also markedly attenuated by iPLA2γ genetic ablation. Collectively, these results identify previously unknown iPLA2γ-initiated signaling pathways mediated by direct 12-LOX oxidation of 2-AA-LPC and 2-AA-LPE. This oxidation generates previously unrecognized eicosanoid-lysophospholipids that may serve as biomarkers for age-related diseases and could potentially be used as targets in therapeutic interventions.




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The heme-regulatory motifs of heme oxygenase-2 contribute to the transfer of heme to the catalytic site for degradation [Protein Structure and Folding]

Heme-regulatory motifs (HRMs) are present in many proteins that are involved in diverse biological functions. The C-terminal tail region of human heme oxygenase-2 (HO2) contains two HRMs whose cysteine residues form a disulfide bond; when reduced, these cysteines are available to bind Fe3+-heme. Heme binding to the HRMs occurs independently of the HO2 catalytic active site in the core of the protein, where heme binds with high affinity and is degraded to biliverdin. Here, we describe the reversible, protein-mediated transfer of heme between the HRMs and the HO2 core. Using hydrogen-deuterium exchange (HDX)-MS to monitor the dynamics of HO2 with and without Fe3+-heme bound to the HRMs and to the core, we detected conformational changes in the catalytic core only in one state of the catalytic cycle—when Fe3+-heme is bound to the HRMs and the core is in the apo state. These conformational changes were consistent with transfer of heme between binding sites. Indeed, we observed that HRM-bound Fe3+-heme is transferred to the apo-core either upon independent expression of the core and of a construct spanning the HRM-containing tail or after a single turnover of heme at the core. Moreover, we observed transfer of heme from the core to the HRMs and equilibration of heme between the core and HRMs. We therefore propose an Fe3+-heme transfer model in which HRM-bound heme is readily transferred to the catalytic site for degradation to facilitate turnover but can also equilibrate between the sites to maintain heme homeostasis.




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Correction: A dual druggable genome-wide siRNA and compound library screening approach identifies modulators of parkin recruitment to mitochondria. [Additions and Corrections]

VOLUME 295 (2020) PAGES 3285–3300An incorrect graph was used in Fig. 5C. This error has now been corrected. Additionally, some of the statistics reported in the legend and text referring to Fig. 5C were incorrect. The F statistics for Fig. 5C should state Fken(3,16) = 7.454, p < 0.01; FCCCP(1,16) = 102.9, p < 0.0001; Finteraction(3,16) = 7.480, p < 0.01. This correction does not affect the results or conclusions of this work.jbc;295/17/5835/F5F1F5Figure 5C.




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Structural insight into the recognition of pathogen-derived phosphoglycolipids by C-type lectin receptor DCAR [Protein Structure and Folding]

The C-type lectin receptors (CLRs) form a family of pattern recognition receptors that recognize numerous pathogens, such as bacteria and fungi, and trigger innate immune responses. The extracellular carbohydrate-recognition domain (CRD) of CLRs forms a globular structure that can coordinate a Ca2+ ion, allowing receptor interactions with sugar-containing ligands. Although well-conserved, the CRD fold can also display differences that directly affect the specificity of the receptors for their ligands. Here, we report crystal structures at 1.8–2.3 Å resolutions of the CRD of murine dendritic cell-immunoactivating receptor (DCAR, or Clec4b1), the CLR that binds phosphoglycolipids such as acylated phosphatidyl-myo-inositol mannosides (AcPIMs) of mycobacteria. Using mutagenesis analysis, we identified critical residues, Ala136 and Gln198, on the surface surrounding the ligand-binding site of DCAR, as well as an atypical Ca2+-binding motif (Glu-Pro-Ser/EPS168–170). By chemically synthesizing a water-soluble ligand analog, inositol-monophosphate dimannose (IPM2), we confirmed the direct interaction of DCAR with the polar moiety of AcPIMs by biolayer interferometry and co-crystallization approaches. We also observed a hydrophobic groove extending from the ligand-binding site that is in a suitable position to interact with the lipid portion of whole AcPIMs. These results suggest that the hydroxyl group-binding ability and hydrophobic groove of DCAR mediate its specific binding to pathogen-derived phosphoglycolipids such as mycobacterial AcPIMs.




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Deletion of fatty acid transport protein 2 (FATP2) in the mouse liver changes the metabolic landscape by increasing the expression of PPAR{alpha}-regulated genes [Lipids]

Fatty acid transport protein 2 (FATP2) is highly expressed in the liver, small intestine, and kidney, where it functions in both the transport of exogenous long-chain fatty acids and the activation of very-long-chain fatty acids. Here, using a murine model, we investigated the phenotypic impacts of deleting FATP2, followed by a transcriptomic analysis using unbiased RNA-Seq to identify concomitant changes in the liver transcriptome. WT and FATP2-null (Fatp2−/−) mice (5 weeks) were maintained on a standard chow diet for 6 weeks. The Fatp2−/− mice had reduced weight gain, lowered serum triglyceride, and increased serum cholesterol levels and attenuated dietary fatty acid absorption. Transcriptomic analysis of the liver revealed 258 differentially expressed genes in male Fatp2−/− mice and a total of 91 in female Fatp2−/− mice. These genes mapped to the following gene ontology categories: fatty acid degradation, peroxisome biogenesis, fatty acid synthesis, and retinol and arachidonic acid metabolism. Targeted RT-quantitative PCR verified the altered expression of selected genes. Of note, most of the genes with increased expression were known to be regulated by peroxisome proliferator–activated receptor α (PPARα), suggesting that FATP2 activity is linked to a PPARα-specific proximal ligand. Targeted metabolomic experiments in the Fatp2−/− liver revealed increases of total C16:0, C16:1, and C18:1 fatty acids; increases in lipoxin A4 and prostaglandin J2; and a decrease in 20-hydroxyeicosatetraenoic acid. We conclude that the expression of FATP2 in the liver broadly affects the metabolic landscape through PPARα, indicating that FATP2 provides an important role in liver lipid metabolism through its transport or activation activities.