GSDMA3 deficiency reprograms cellular metabolism and modulates BCR signaling in murine B cells
暂无分享,去创建一个
Lu Yang | Danqing Kang | Chaohong Liu | Xiang Gao | Zhaoyu Lin | Xi Luo | Ju Liu | Guofeng Fang | F. Guan | J. Lei | Jiang Chang | Lindsey G. Luo | Heng Gu | Yanmei Huang | Qi Liu | Jiahui Lei
[1] G. Dubyak,et al. Protein engineering reveals that gasdermin A preferentially targets mitochondrial membranes over the plasma membrane during pyroptosis , 2023, The Journal of biological chemistry.
[2] U. Schlötzer-Schrehardt,et al. Mitochondrial respiration in B lymphocytes is essential for humoral immunity by controlling the flux of the TCA cycle. , 2022, Cell reports.
[3] Ying Fu,et al. Immunometabolism shapes B cell fate and functions , 2022, Immunology.
[4] A. McLean,et al. The Role of Mitochondria in the Immune Response in Critical Illness , 2022, Critical Care.
[5] M. Kubo,et al. SARS-CoV-2 infection causes immunodeficiency in recovered patients by downregulating CD19 expression in B cells via enhancing B-cell metabolism , 2021, Signal Transduction and Targeted Therapy.
[6] G. Lenz,et al. Targeting B-cell receptor and PI3K signaling in diffuse large B-cell lymphoma. , 2021, Blood.
[7] John G Doench,et al. Control of gasdermin D oligomerization and pyroptosis by the Ragulator-Rag-mTORC1 pathway , 2021, Cell.
[8] J. Lieberman,et al. Channelling inflammation: gasdermins in physiology and disease , 2021, Nature reviews. Drug discovery.
[9] Feizhou Lyu,et al. CD73 alleviates GSDMD‐mediated microglia pyroptosis in spinal cord injury through PI3K/AKT/Foxo1 signaling , 2020, Clinical and translational medicine.
[10] M. Nussenzweig,et al. Evolution of Antibody Immunity to SARS-CoV-2 , 2020, bioRxiv.
[11] L. Blanco,et al. Effects of Gasdermin D in Modulating Murine Lupus and its Associated Organ Damage , 2020, Arthritis & rheumatology.
[12] Hao Wu,et al. Mechanism and Regulation of Gasdermin-Mediated Cell Death. , 2019, Cold Spring Harbor perspectives in biology.
[13] Y. Jing,et al. CX3CR1 positively regulates BCR signaling coupled with cell metabolism via negatively controlling actin remodeling , 2020, Cellular and Molecular Life Sciences.
[14] J. Jellusova. Metabolic control of B cell immune responses. , 2019, Current opinion in immunology.
[15] Ali F. Abdel-Wahab,et al. Targeting glucose metabolism to suppress cancer progression: prospective of anti-glycolytic cancer therapy. , 2019, Pharmacological research.
[16] Michael Meyer-Hermann,et al. Class-Switch Recombination Occurs Infrequently in Germinal Centers. , 2019, Immunity.
[17] S. Pierce,et al. B cell signaling in context , 2019, Nature Immunology.
[18] Julia Jellusova,et al. Cross-talk between signal transduction and metabolism in B cells. , 2018, Immunology letters.
[19] H. Sandoval,et al. Regulation of B cell fate, survival, and function by mitochondria and autophagy. , 2017, Mitochondrion.
[20] R. Rickert,et al. Metabolic Regulation of the Immune Humoral Response. , 2017, Immunity.
[21] Michael D. Buck,et al. Metabolic Instruction of Immunity , 2017, Cell.
[22] H. Miller,et al. Rictor positively regulates B cell receptor signaling by modulating actin reorganization via ezrin , 2017, PLoS biology.
[23] P. Gregersen,et al. Transethnic meta-analysis identifies GSDMA and PRDM1 as susceptibility genes to systemic sclerosis , 2017, Annals of the rheumatic diseases.
[24] J. Woodgett,et al. GSK3 is a metabolic checkpoint regulator in B cells , 2016, Nature Immunology.
[25] Julia Jellusova,et al. The PI3K pathway in B cell metabolism , 2016, Critical reviews in biochemistry and molecular biology.
[26] Dacheng Wang,et al. Pore-forming activity and structural autoinhibition of the gasdermin family , 2016, Nature.
[27] L. Bullinger,et al. PI3 Kinase and FOXO1 Transcription Factor Activity Differentially Control B Cells in the Germinal Center Light and Dark Zones. , 2015, Immunity.
[28] J. Söderman,et al. Gene Expression-Genotype Analysis Implicates GSDMA, GSDMB, and LRRC3C as Contributors to Inflammatory Bowel Disease Susceptibility , 2015, BioMed research international.
[29] Masaru Tamura,et al. GSDM family genes meet autophagy. , 2015, The Biochemical journal.
[30] Liang-Tung Yang,et al. N-terminal functional domain of Gasdermin A3 regulates mitochondrial homeostasis via mitochondrial targeting , 2015, Journal of Biomedical Science.
[31] Qinghua Wang,et al. Loss of conserved Gsdma3 self-regulation causes autophagy and cell death. , 2015, The Biochemical journal.
[32] Katsu Takahashi,et al. Mitochondrial function provides instructive signals for activation-induced B-cell fates , 2015, Nature Communications.
[33] Masaru Tamura,et al. Functional Conservation of Gsdma Cluster Genes Specifically Duplicated in the Mouse Genome , 2013, G3: Genes, Genomes, Genetics.
[34] Chris Wallace,et al. Genetic association analyses of atopic illness and proinflammatory cytokine genes with type 1 diabetes , 2011, Diabetes/metabolism research and reviews.
[35] Jinho Yu,et al. Polymorphisms in GSDMA and GSDMB are associated with asthma susceptibility, atopy and BHR , 2011, Pediatric pulmonology.
[36] E. von Mutius,et al. Asthma-associated polymorphisms in 17q21 influence cord blood ORMDL3 and GSDMA gene expression and IL-17 secretion. , 2011, The Journal of allergy and clinical immunology.
[37] Markus Werner,et al. Role of PI3K in the generation and survival of B cells , 2010, Immunological reviews.
[38] R. DePinho,et al. PI3 Kinase Signals BCR-Dependent Mature B Cell Survival , 2009, Cell.
[39] K. Ogawa,et al. Distinctive expression and function of four GSDM family genes (GSDMA‐D) in normal and malignant upper gastrointestinal epithelium , 2009, Genes, chromosomes & cancer.
[40] K. Sumiyama,et al. Members of a novel gene family, Gsdm, are expressed exclusively in the epithelium of the skin and gastrointestinal tract in a highly tissue-specific manner. , 2007, Genomics.