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Wei Yu
yuw@fudan.edu.cn
English, Chinese
Shanghai
Fudan University
Life Sciences
  • 2009 - PhD: Fudan University
  • Achievement: Published over ten papers as first or corresponding author in journals like Cell, Molecular Cell, Nature Communications, PNAS, Cell Reports, JBC
  • 2009-2014 - University of Wisconsin-Madison - Postdoctoral and Assistant Researcher
  • 2014-present - Fudan University - Researcher and Doctoral Supervisor
  • Shanghai 'Oriental Scholar' Distinguished Professor
  • National High-level Overseas Talent Introduction Program
Metabolic Regulation of Aging
  • Acetylation Stabilizes Phosphoglycerate Dehydrogenase by Disrupting the Interaction of E3 Ligase RNF5 to Promote Breast Tumorigenesis, Wang C, Wan X, Yu T, Huang Z, Shen C, Qi Q, Xiang S, Chen X, Arbely E, Ling ZQ, Liu CY, Yu W, 2020
  • Cisplatin inhibits SIRT3-deacetylation MTHFD2 to disturb cellular redox balance in colorectal cancer cell, Wan X, Wang C, Huang Z, Zhou D, Xiang S, Qi Q, Chen X, Arbely E, Liu CY, Du P, Yu W, 2020
  • LAMB3 promotes tumour progression through the AKT–FOXO3/4 axis and is transcriptionally regulated by the BRD2/acetylated ELK4 complex in colorectal cancer, Zhu Z, Song J, Guo Y, Huang Z, Chen X, Dang X, Huang Y, Wang Y, Ou W, Yang Y, Yu W, Liu CY, Cui L, 2020
  • CCBE1 promotes tumor lymphangiogenesis and is negatively regulated by TGFβ signaling in colorectal cancer, Song J, Chen W, Cui X, Huang Z, Wen D, Yang Y, Yu W, Cui L, Liu CY, 2020
  • Deacetylation of Serine Hydroxymethyl-transferase 2 by SIRT3 promotes Colorectal Carcinogenesis, Wei Z, Song J, Wang G, Cui X, Zheng J, Tang Y, Chen X, Li J, Cui L, Liu CY, Yu W, 2018
  • Acetylation promotes TyrRS nuclear translocation to prevent oxidative damage, Cao X, Li C, Xiao S, Tang Y, Huang J, Zhao S, Li X, Li J, Zhang R, Yu W, 2017
  • Loss of SIRT3 Provides Growth Advantage for B Cell Malignancies, Yu W, Denu RA, Krautkramer KA, Grindle KM, Yang DT, Asimakopoulos F, Hematti P, Denu JM, 2016
  • SIRT3 deacetylates isocitrate dehydrogenase 2 (IDH2) and regulates mitochondrial redox status, Yu W, Dittenhafer-Reed KE, Denu JM, 2012
  • Sirt3 promotes the urea cycle and fatty acid oxidation during dietary restriction, Hallows WC, Yu W, Smith BC, Devries MK, Ellinger JJ, Someya S, Shortreed MR, Prolla T, Markley JL, Smith LM, Zhao S, Guan KL, Denu JM, 2011
  • Sirt3 mediates reduction of oxidative damage and prevention of age-related hearing loss under caloric restriction, Someya S, Yu W, Hallows WC, Xu J, Vann JM, Leeuwenburgh C, Tanokura M, Denu JM, Prolla TA, 2010
  • Regulation of cellular metabolism by protein lysine acetylation, Zhao S, Xu W, Jiang W, Yu W, Lin Y, Zhang T, Yao J, Yang P, Li H, Li Y, Shi J, Qin l, Lei Q, Xiong Y, Guan KL, 2010
  • Lysine 88 Acetylation Negatively Regulates Ornithine Carbamoyltransferase Activity in Response to Nutrient Signals, Yu W, Lin Y, Yao J, Huang W, Lei Q, Xiong Y, Zhao S, Guan KL, 2009
Metabolism Aging Deacetylation Enzymes Cellular Biology Molecular Biology Cancer Redox Balance Sirt3 Tumorigenesis

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