SMARCAD1 ATPase activity is required to silence endogenous retroviruses in embryonic stem cells
АТФазная активность SMARCAD1 необходима для подавления эндогенных ретровирусов в эмбриональных стволовых клетках
2019-03-22
SCID: 54.1/ft6ykg2x
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ATP-dependent chromatin remodelingKAP1-dependent ERV silencingSMARCAD1 ATPaseendogenous retroviruses (ERVs)intracisternal A-type particles (IAPs)
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Abstract (AI)
Endogenous retroviruses (ERVs) can confer benefits to their host but present a threat to genome integrity if not regulated correctly. Here we identify the SWI/SNF-like remodeler SMARCAD1 as a key factor in the control of ERVs in embryonic stem cells. SMARCAD1 is enriched at ERV subfamilies class I and II, particularly at active intracisternal A-type particles (IAPs), where it preserves repressive histone methylation marks. Depletion of SMARCAD1 results in de-repression of IAPs and adjacent genes. Recruitment of SMARCAD1 to ERVs is dependent on KAP1, a central component of the silencing machinery. SMARCAD1 and KAP1 occupancy at ERVs is co-dependent and requires the ATPase function of SMARCAD1. Our findings uncover a role for the enzymatic activity of SMARCAD1 in cooperating with KAP1 to silence ERVs. This reveals ATP-dependent chromatin remodeling as an integral step in retrotransposon regulation in stem cells and advances our understanding of the mechanisms driving heterochromatin establishment.
Key Findings
1
Recruitment of SMARCAD1 to ERVs depends on KAP1, and SMARCAD1 and KAP1 occupancy at ERVs is co-dependent.
2
SMARCAD1 is a key SWI/SNF-like chromatin remodeler enriched at class I and II ERV subfamilies, especially active IAPs, in embryonic stem cells.
3
SMARCAD1 preserves repressive histone methylation marks at ERVs, and its depletion leads to de-repression of IAPs and adjacent genes.
4
The ATPase (enzymatic) activity of SMARCAD1 is required for its co-dependent occupancy with KAP1 and for silencing ERVs, indicating ATP-dependent chromatin remodeling is essential for retrotransposon regulation.
Research Object
SMARCAD1-mediated regulation of endogenous retroviruses (ERVs) in embryonic stem cells
Research Subject
Requirement of SMARCAD1 ATPase activity for silencing ERV subfamilies (notably IAPs) via preservation of repressive histone methylation and co-dependent recruitment with KAP1 (ATP-dependent chromatin remodeling in retrotransposon repression)
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2019-03-22
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