SIRT7 antagonizes human stem cell aging as a heterochromatin stabilizer

被引:0
|
作者
Shijia Bi [1 ,2 ]
Zunpeng Liu [1 ,2 ]
Zeming Wu [1 ,2 ]
Zehua Wang [1 ,2 ]
Xiaoqian Liu [1 ,2 ]
Si Wang [3 ,4 ,5 ,2 ]
Jie Ren [6 ,7 ,5 ,2 ]
Yan Yao [8 ]
Weiqi Zhang [6 ,7 ,5 ,2 ]
Moshi Song [3 ,5 ,2 ]
GuangHui Liu [3 ,4 ,5 ,2 ]
Jing Qu [1 ,5 ,2 ]
机构
[1] State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences
[2] University of Chinese Academy of Sciences
[3] State Key Laboratory of Membrane Biology, Institute of Zoology, Chinese Academy of Sciences
[4] Beijing Institute for Brain Disorders, Advanced Innovation Center for Human Brain Protection, National Clinical Research Center for Geriatric Disorders, Xuanwu Hospital Capital Medical University
[5] Institute for Stem cell and Regeneration, Chinese Academy of Sciences
[6] CAS Key Laboratory of Genomic and Precision Medicine, Beijing Institute of Genomics, Chinese Academy of Sciences
[7] China National Center for Bioinformation
[8] Department of Cardiology, Beijing Anzhen Hospital, Capital Medical
关键词
D O I
暂无
中图分类号
学科分类号
摘要
SIRT7, a sirtuin family member implicated in aging and disease, is a regulator of metabolism and stress responses. It remains elusive how human somatic stem cell populations might be impacted by SIRT7. Here, we found that SIRT7 expression declines during human mesenchymal stem cell(hMSC) aging and that SIRT7deficiency accelerates senescence. Mechanistically,SIRT7 forms a complex with nuclear lamina proteins and heterochromatin proteins, thus maintaining the repressive state of heterochromatin at nuclear periphery.Accordingly, deficiency of SIRT7 results in loss of heterochromatin, de-repression of the LINE1 retrotransposon(LINE1), and activation of innate immune signaling via the cGAS-STING pathway. These agingassociated cellular defects were reversed by overexpression of heterochromatin proteins or treatment with a LINE1 targeted reverse-transcriptase inhibitor. Together,these findings highlight how SIRT7 safeguards chromatin architecture to control innate immune regulation and ensure geroprotection during stem cell aging.
引用
收藏
页码:483 / 504
页数:22
相关论文
共 50 条
  • [1] SIRT7 antagonizes human stem cell aging as a heterochromatin stabilizer
    Bi, Shijia
    Liu, Zunpeng
    Wu, Zeming
    Wang, Zehua
    Liu, Xiaoqian
    Wang, Si
    Ren, Jie
    Yao, Yan
    Zhang, Weiqi
    Song, Moshi
    Liu, Guang-Hui
    Qu, Jing
    [J]. PROTEIN & CELL, 2020, 11 (07) : 483 - 504
  • [3] SIRT7 slows down stem cell aging by preserving heterochromatin: a perspective on the new discovery
    Sun, Luyang
    Dang, Weiwei
    [J]. PROTEIN & CELL, 2020, 11 (07) : 469 - 471
  • [4] SIRT7 slows down stem cell aging by preserving heterochromatin:a perspective on the new discovery
    Luyang Sun
    Weiwei Dang
    [J]. Protein & Cell, 2020, 11 (07) : 469 - 471
  • [5] SIRT7 in the aging process
    Lagunas-Rangel, Francisco Alejandro
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2022, 79 (06)
  • [6] SIRT7 in the aging process
    Francisco Alejandro Lagunas-Rangel
    [J]. Cellular and Molecular Life Sciences, 2022, 79
  • [7] A hairy tale:SIRT7 safeguards skin stem cells during aging
    Simon, Matthew
    Emmrich, Stephan
    Seluanov, Andrei
    Gorbunova, Vera
    [J]. EMBO JOURNAL, 2020, 39 (18):
  • [8] Sirtuin 7 (SIRT7): influence factor in healthy aging and age dependent myeloid stem cell disorder development
    Kaiser, A.
    Schmidt, M.
    Huber, O.
    Frietsch, J.
    Eiselt, G.
    Hochhaus, A.
    Mueller, J.
    Ernst, T.
    [J]. ONCOLOGY RESEARCH AND TREATMENT, 2019, 42 : 169 - 169
  • [9] MAVS Antagonizes Human Stem Cell Senescence as a Mitochondrial Stabilizer
    Wang, Cui
    Yang, Kuan
    Liu, Xiaoqian
    Wang, Si
    Song, Moshi
    Belmonte, Juan Carlos Izpisua
    Qu, Jing
    Liu, Guang-Hui
    Zhang, Weiqi
    [J]. RESEARCH, 2023, 6
  • [10] SIRT7 antagonizes TGF-β signaling and inhibits breast cancer metastasis
    Xiaolong Tang
    Lei Shi
    Ni Xie
    Zuojun Liu
    Minxian Qian
    Fanbiao Meng
    Qingyang Xu
    Mingyan Zhou
    Xinyue Cao
    Wei-Guo Zhu
    Baohua Liu
    [J]. Nature Communications, 8