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Resurrection of endogenous retroviruses during aging reinforces senescence

Authors :
Xiaoqian Liu
Zunpeng Liu
Zeming Wu
Jie Ren
Yanling Fan
Liang Sun
Gang Cao
Yuyu Niu
Baohu Zhang
Qianzhao Ji
Xiaoyu Jiang
Cui Wang
Qiaoran Wang
Zhejun Ji
Lanzhu Li
Concepcion Rodriguez Esteban
Kaowen Yan
Wei Li
Yusheng Cai
Si Wang
Aihua Zheng
Yong E. Zhang
Shengjun Tan
Yingao Cai
Moshi Song
Falong Lu
Fuchou Tang
Weizhi Ji
Qi Zhou
Juan Carlos Izpisua Belmonte
Weiqi Zhang
Jing Qu
Guang-Hui Liu
Source :
Cell. 186:287-304.e26
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

SUMMARYWhether and how certain transposable elements with viral origins, such as endogenous retroviruses (ERVs) dormant in our genomes, can become awakened and contribute to the aging process are largely unknown. In human senescent cells, we found that HERVK (HML-2), the most recently integrated human ERVs, are unlocked to transcribe viral genes and produce retrovirus-like particles (RVLPs). These HERVK RVLPs constitute a transmissible message to elicit senescence phenotypes in young cells, which can be blocked by neutralizing antibodies. Activation of ERVs was also observed in organs of aged primates and mice, as well as in human tissues and serum from the elderly. Their repression alleviates cellular senescence and tissue degeneration and, to some extent, organismal aging. These findings indicate that the resurrection of ERVs is a hallmark and driving force of cellular senescence and tissue aging.In briefLiu and colleagues uncover the ways in which de-repression of human endogenous retrovirus triggers cellular senescence and tissue aging; the findings provide fresh insights into therapeutic strategies for alleviating aging.HighlightsDerepression of the endogenous retrovirus contributes to programmed agingUpregulation of HERVK triggers the innate immune response and cellular senescenceExtracellular HERVK retrovirus-like particles induce senescence in young cellsEndogenous retrovirus serves as a potential target to alleviate agingsGraphical abstract

Details

ISSN :
00928674
Volume :
186
Database :
OpenAIRE
Journal :
Cell
Accession number :
edsair.doi.dedup.....041a06a6f97eeb1e061e94a0540a665a