师资队伍

生物化学与分子生物学系

武泽明

日期:2025-02-21 点击数: 来源:

   名:

武泽明

 

      称:

 

最高学位:

 

   话:

 

   件:

wuzeming@jlu.edu.cn

工作地点:

吉林大学生命科学楼387

研究方向:

1. 细胞衰老及其微环境在肿瘤进展中的作用、机制和干预研究

2. 衰老及肿瘤细胞命运决定中的表观遗传调控

教育经历:

2015.09-2020.09 中国科学院大学/中科院动物研究所 再生医学 博士

2010.09-2015.06 吉林大学动物医学学院 动物医学 学士

工作经历:

2024.11-至今 吉林大学 生命科学学院 教授

2020.10-2024.10 中国科学院动物研究所 特别研究助理/博士后

荣誉称号:

吉林大学“唐敖庆”领军教授

中国科协第九届“青年人才托举工程”

中国2023年度重要医学进展等

研究成果:

1. 基本情况

围绕衰老与癌症等相关疾病的交叉机制与干预,致力于利用细胞和动物模型及临床样本,结合细胞生物学、分子生物学、遗传学、免疫学、生命多组学等跨学科交叉技术,揭示细胞衰老及衰老微环境在肿瘤进展中的作用机制,特别聚焦于相关调控过程中的表观遗传机制解析,同时致力于发展可有效改善细胞衰老与衰老微环境、干预肿瘤进程的新型靶标和策略。近些年,在衰老的模型搭建、表观机制解析、干预策略开发等方面以第一/通讯(含共同)作者发表学术论文20篇(篇均影响因子近20),包括CellNature Reviews Molecular Cell BiologyNature AgingMolecular CellDevelopmental CellNucleic Acids ResearchTrends in Pharmacological SciencesProtein & CellAging Cell等;并以其他共同作者在NatureCell Stem CellScience Translational MedicineCell ResearchNature Communications等杂志发表论文20余篇。相关成果入选2023年度“中国科学十大进展”、“中国生命科学十大进展”、“中央广播电视总台国内十大科技新闻”、“中国2023年度重要医学进展”,获“F1000”推荐,并被遴选为Nature Reviews Molecular Cell BiologyNature AgingProtein & Cell杂志封面论文,同时申请发明专利5项(含1PCT)、授权1项。主持国家自然科学基金面上项目、国家自然科学基金青年项目、吉林省青年科学基金项目(B类)、中国科学院特别研究助理项目、吉林大学学科交叉青年创新研究团队项目,作为研究骨干(子课题负责人)参与国家重点研发计划,入选中国科协第九届“青年人才托举工程”,受吉林大学“唐匡”系列人才项目资助。

2. 代表性论文

(1) Wu, Zeming#(第一作者); Qu, Jing*; Zhang, Weiqi*; Aging Biomarker Consortium; Liu, Guang-Hui*. Biomarkers of ageing of humans and non-human primates. Nature Reviews Molecular Cell Biology (影响因子:90.2;封面文章) , 2025, 26(11): 826-847.

(2) Liu, Xiaoqian#; Liu, Zunpeng#; Wu, Zeming#共同第一作者; Ren, Jie#; Fan, Yanling; Sun, Liang; Cao, Gang; Niu, Yuyu; Zhang, Baohu; Jiang, Xiaoyu; Wang, Cui; Wang, Qiaoran; Li, Lanzhu; Yan, Kaowen; Ji, Qianzhao; Li, Wei; Ji, Zhejun; Cai, Yusheng; Wang, Si; Zheng, Aihua; Song, Moshi; Lu, Falong; Zhang, Yong; Ji, Weizhi; Zhou, Qi; Belmonte, Juan Carlos Izpisua; Qu, Jing*; Zhang, Weiqi*; Liu, Guang-Hui*. Resurrection of endogenous retroviruses during aging reinforces senescence. Cell(影响因子:42.5;获得F1000推荐), 2023, 186(2): 287-304.e26.

(3) Wu, Zeming#第一作者; Lu, Mingming#; Liu, Di#; Shi, Yue#; Ren, Jie#; Wang, Si#; Jing, Ying; Zhang, Sheng; Zhao, Qian; Li, Hongyu; Yu, Zihui; Liu, Zunpeng; Bi, Shijia; Wei, Tuo; Yang, Yun-Gui; Xiao, Jingfa; Belmonte, Juan Carlos Izpisua; Qu, Jing*; Zhang, Weiqi*; Ci, Weimin*; Liu, Guang-Hui*. m6A-epitranscriptomic regulation of tissue homeostasis during primate aging. Nature Aging(影响因子:19.5;封面文章), 2023, 3(6): 705-721.

(4) Wu, Zeming#第一作者; Qu, Jing*; Liu, Guang-Hui*. Roles of chromatin and genome instability in cellular senescence and their relevance to ageing and related diseases. Nature Reviews Molecular Cell Biology(影响因子:90.2, 2024, 25(12):979-1000.

(5) Zhao, Hongkai#; Ji, Qianzhao#; Wu, Zeming#共同第一作者; Wang, Si#; Ren, Jie; Yan, Kaowen; Wang, Zehua; Hu, Jianli; Chu, Qun; Hu, Huifang; Cai, Yusheng; Wang, Qiaoran; Huang, Daoyuan; Ji, Zhejun; Li, Jingyi; Belmonte, Juan Carlos Izpisua; Song, Moshi*; Zhang, Weiqi*; Qu, Jing*; Liu, Guang-Hui*. Destabilizing heterochromatin by APOE mediates senescence. Nature Aging(影响因子:19.5, 2022, 2(4): 1-14.

(6) Wu, Zeming#第一作者; Qu, Jing*; Zhang, Weiqi*; Liu, Guang-Hui*. Stress, epigenetics, and aging: Unraveling the intricate crosstalk. Molecular Cell(影响因子:16.6, 2024, 84(1):34-54.

(7) Wu, Zeming#第一作者; Shi Yue#; Lu Mingming#; Song, Moshi; Yu, Zihui; Wang, Jilu; Wang, Si; Ren, Jie; Yang, Yun-Gui; Liu, Guang-Hui*; Zhang, Weiqi*; Ci, Weimin*; Qu, Jing*. METTL3 counteracts premature aging via m6A-dependent stabilization of MIS12 mRNA. Nucleic Acids Research(影响因子:13.1, 2020, 48(19): 11083-11096.

(8) Diao, Zhiqing#; Ji, Qianzhao#; Wu, Zeming#共同第一作者; Zhang, Weiqi#; Cai, Yusheng; Wang, Zehua; Hu, Jianli; Liu, Zunpeng; Wang, Qiaoran; Bi, Shijia; Huang, Daoyuan, Ji, Zhejun; Liu, Guang-Hui*; Wang, Si*; Song, Moshi*; Qu, Jing*. SIRT3 consolidates heterochromatin and counteracts senescence. Nucleic Acids Research(影响因子:13.1;被选为NAR突破性文章), 2021, 49(8): 4203-4219.

(9) Wu, Zeming#第一作者; Zhang, Weiqi*; Qu, Jing*; Liu, Guang-Hui*. Emerging epigenetic insights into aging mechanisms and interventions. Trends in Pharmacological Sciences(影响因子:19.9, 2024, 45(2):157-172.

(10) He, Yifang#; Ji, Qianzhao#; Wu, Zeming#共同第一作者; Cai, Yusheng#; Yin, Jian; Zhang, Yiyuan; Zhang, Sheng; Liu, Xiaoqian; Zhang, Weiqi; Liu, Guang-Hui*; Wang, Si*; Song, Moshi*; Qu, Jing*. 4E-BP1 counteracts human mesenchymal stem cell senescence via maintaining mitochondrial homeostasis. Protein & Cell(影响因子:12.8, 2023, 14(3): 202-216.

(11) Zhang, Sheng#; Wu, Zeming#共同第一作者; Shi, Yue#; Wang, Si#; Ren, Jie#; Yu, Zihui; Huang, Daoyuan; Yan, Kaowen; He, Yifang; Liu, Xiaoqian; Ji, Qianzhao; Liu, Beibei; Liu, Zunpeng; Qu, Jing; Liu, Guang-Hui*; Ci, Weimin*; Wang, Xiaoqun*; Zhang, Weiqi*. FTO stabilizes MIS12 and counteracts senescence. Protein & Cell(影响因子:12.8, 2022, 13(12): 954-960.

(12) Liu, Zunpeng#; Ji, QianZhao#; Ren, Jie#; Yan, Pengze#; Wu, Zeming#共同第一作者; Wang, Si#; Sun, Liang; Wang, Zehua; Li, Jiaming; Sun, Guoqiang; Liang, Chuqian; Sun, Run; Jiang, Xiaoyu; Wang, Qiaoran; Hu, Jianli; Bi, Shijia; Wei, Gang; Cao, Gang; Zhao, Guoguang; Wang, Hongmei; Zhou, Qi; Belmonte, Juan Carlos Izpisua; Qu, Jing*; Zhang, Weiqi*; Liu, Guang-Hui*. Large-scale chromatin reorganization reactivates placenta-specific genes that drive cellular aging. Developmental Cell(影响因子:8.7, 2022, 57(11): 1347-1368.e12.

(13) Li, Hongyu#; Wu, Zeming#共同第一作者; Liu, Xiaoqian#; Zhang, Sheng; Ji, Qianzhao; Jiang, Xiaoyu; Liu, Zunpeng; Wang, Si; Qu, Jing; Zhang, Weiqi; Song, Moshi*; Song, Eli*; Liu, Guang-Hui*. ALKBH1 deficiency leads to loss of homeostasis in human diploid somatic cells. Protein & Cell(影响因子:12.8, 2020, 11(9): 688-695.

(14) Wu, Zeming#第一作者; Zhang, Weiqi#; Song, Moshi#; Wang, Wei; Wei, Gang; Li, Wei; Lei, Jinghui; Huang, Yu; Sang, Yanmei; Chan, Piu; Chen, Chang; Qu, Jing*; Suzuki, Keiichiro*; Belmonte, Juan Carlos Izpisua*; Liu, Guang-Hui*. Differential stem cell aging kinetics in Hutchinson-Gilford progeria syndrome and Werner syndrome. Protein & Cell(影响因子:12.8;封面文章), 2018, 9(4): 333-350.

(15) Wu, Zeming#(第一作者); Ren Jie*; Liu, Guang-Hui*. Deciphering RNA m6A regulation in aging: Perspectives on current advances and future directions. Aging Cell影响因子:7.1, 2023; 22(10): e13972.

 

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