Zhiyong Mao
zhiyong_mao@tongji.edu.cn
English, Chinese
Shanghai
Tongji University
Life Sciences
  • 2002 - Bachelor's Degree: Nanjing University, School of Life Sciences
  • 2004 - Master's Degree: Nanjing University, School of Life Sciences
  • 2010 - PhD: University of Rochester, USA
  • National Outstanding Young Scientist, Overseas High-level Youth Talent
  • 2010-2012 - University of Rochester, Department of Biology: Postdoctoral Researcher
  • Since 2012 - Tongji University: Head of Research Group on Aging, Stem Cells, and Gynecological Tumor Related Genomic Stability
  • 2013 - Chief Scientist of the National '973' Young Project
  • 2013 - Shanghai 'Pujiang Talent' Program
  • 2016 - National Natural Science Foundation of China Outstanding Young Scientist Fund
  • 2019 - Shanghai 'Outstanding Academic Leader' Project and 'Dawn Program'
  • 2021 - Third Prize of Shanghai Medical Science and Technology Award (First Accomplisher)
  • 2022 - National Outstanding Young Scientist Fund
Aging and related diseases
Stem cell genomic stability
Development and translation of new methods for delaying aging and treating related diseases
  • Nuclear cGAS restricts L1 retrotransposition by promoting TRIM41-mediated ORF2p ubiquitination and degradation, Zhen Z, Chen Y, Wang H, Tang H, Zhang H, Liu H, Jiang Y, Mao Z*, 2023
  • Androgen signaling stabilizes genomes to counteract senescence by promoting XRCC4 transcription, Chen Y, Zhen Z, Chen L, Wang H, Wang X, Sun X, Song Z, Wang H, Lin Y, Zhang W, Wu G, Jiang Y*, Mao Z*, 2023
  • Impaired end joining induces cardiac atrophy in a Hutchinson–Gilford progeria mouse model, Chen Y, Huang S, Cui Z, Sun X, Tang Y, Zhang H, Chen Z, Jiang R, Zhang W, Li X, Chen J, Liu B, Jiang Y, Wei K*, Mao Z*, 2023
  • Loss of ER/PR/HER2 promotes USP15-dependent stabilization of PARP1 in triple-negative breast cancer, Sun X, Tang H, Chen Y, Chen Z, Hu Z, Cui Z, Tao Y, Yuan J, Fu Y, Zhuang Z, He Q, Li Q, Xu X, Wan X, Jiang Y*, Mao Z*, 2023
  • Farrerol directly activates the deubiqutinase UCHL3 to promote DNA repair and reprogramming when mediated by somatic cell nuclear transfer, Zhang W, Wang M, Song Z, Fu Q, Chen J, Zhang W, Gao S, Sun X, Yang G, Zhang Q, Yang J, Tang H, Wang H, Kou X, Wang H, Mao Z*, Xu X*, Gao S*, Jiang Y*, 2023
Aging Disease Development Dna Repair Regulatory Mechanisms Stem Cells Genomic Stability Gynecological Tumors Method Development Disease Prevention Translational Research

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