Stem cell activity-coupled suppression of endogenous retrovirus governs adult tissue regeneration

干细胞活性与内源性逆转录病毒抑制的偶联机制调控着成体组织的再生。

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作者:Ying Lyu ,Soo Jin Kim ,Ericka S Humphrey ,Richa Nayak ,Yinglu Guan ,Qingnan Liang ,Kun Hee Kim ,Yukun Tan ,Jinzhuang Dou ,Huandong Sun ,Xingzhi Song ,Priyadharsini Nagarajan ,Kamryn N Gerner-Mauro ,Kevin Jin ,Virginia Liu ,Rehman H Hassan ,Miranda L Johnson ,Lisa P Deliu ,Yun You ,Anurag Sharma ,H Amalia Pasolli ,Yue Lu ,Jianhua Zhang ,Vakul Mohanty ,Ken Chen ,Youn Joo Yang ,Taiping Chen ,Yejing Ge

Abstract

Mammalian retrotransposons constitute 40% of the genome. During tissue regeneration, adult stem cells coordinately repress retrotransposons and activate lineage genes, but how this coordination is controlled is poorly understood. Here, we observed that dynamic expression of histone methyltransferase SETDB1 (a retrotransposon repressor) closely mirrors stem cell activities in murine skin. SETDB1 ablation leads to the reactivation of endogenous retroviruses (ERVs, a type of retrotransposon) and the assembly of viral-like particles, resulting in hair loss and stem cell exhaustion that is reversible by antiviral drugs. Mechanistically, at least two molecularly and spatially distinct pathways are responsible: antiviral defense mediated by hair follicle stem cells and progenitors and antiviral-independent response due to replication stress in transient amplifying cells. ERV reactivation is promoted by DNA demethylase ten-eleven translocation (TET)-mediated hydroxymethylation and recapitulated by ablating cell fate transcription factors. Together, we demonstrated ERV silencing is coupled with stem cell activity and essential for adult hair regeneration. Keywords: DNA demethylation; adult stem cells; antiviral response; endogenous retroviruses; hair follicle stem cell exhaustion; hair loss; heterochromatin; replication stress; retrotransposons; skin.

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