Zhiyong Mao, Ph.D.

Affiliations: 
2010 University of Rochester, Rochester, NY 
Area:
Molecular Biology, Cell Biology, Genetics
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"Zhiyong Mao"
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Parents

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Vera Gorbunova grad student 2010 Rochester
 (Roles of cancer, aging, cell cycle and telomere associated proteins in mammalian DNA double strand break repair.)
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Publications

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Huang Y, Tang M, Hu Z, et al. (2024) SMYD3 promotes endometrial cancer through epigenetic regulation of LIG4/XRCC4/XLF complex in non-homologous end joining repair. Oncogenesis. 13: 3
Chen Y, Zhen Z, Chen L, et al. (2023) Androgen signaling stabilizes genomes to counteract senescence by promoting XRCC4 transcription. Embo Reports. e56984
Tang M, Chen G, Tu B, et al. (2023) SMYD2 inhibition-mediated hypomethylation of Ku70 contributes to impaired nonhomologous end joining repair and antitumor immunity. Science Advances. 9: eade6624
Chen Y, Cui Z, Chen Z, et al. (2023) IDDoR: a novel reporter mouse system for simultaneous and quantitative in vivo analysis of both DNA double-strand break repair pathways. Protein & Cell. 14: 369-375
Zhang W, Wang M, Song Z, et al. (2023) Farrerol directly activates the deubiqutinase UCHL3 to promote DNA repair and reprogramming when mediated by somatic cell nuclear transfer. Nature Communications. 14: 1838
Xie Y, Wang Y, Xu Z, et al. (2022) Preclinical validation and phase I trial of 4-hydroxysalicylanilide, targeting ribonucleotide reductase mediated dNTP synthesis in multiple myeloma. Journal of Biomedical Science. 29: 32
Wang F, Zhao M, Chang B, et al. (2022) Cytoplasmic PARP1 links the genome instability to the inhibition of antiviral immunity through PARylating cGAS. Molecular Cell
Ren J, Wang X, Dong C, et al. (2022) Sirt1 Protects Subventricular Zone-Derived Neural Stem Cells from DNA Double-Strand Breaks and Contributes to Olfactory Function Maintenance in Aging Mice. Stem Cells (Dayton, Ohio)
Ma X, Wang C, Zhou B, et al. (2022) DNA Polymerase η promotes non-homologous end joining upon etoposide exposure dependent on the scaffolding protein Kap1. The Journal of Biological Chemistry. 101861
Geng A, Xu S, Yao Y, et al. (2022) Chrysin impairs genomic stability by suppressing DNA double-strand break repair in breast cancer cells. Cell Cycle (Georgetown, Tex.). 1-13
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