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Merck
CN
  • Recruitment of the Histone Variant MacroH2A1 to the Pericentric Region Occurs upon Chromatin Relaxation and Is Responsible for Major Satellite Transcriptional Regulation.

Recruitment of the Histone Variant MacroH2A1 to the Pericentric Region Occurs upon Chromatin Relaxation and Is Responsible for Major Satellite Transcriptional Regulation.

Cells (2023-09-08)
Ludmila Recoules, Nicolas Tanguy Le Gac, Fatima Moutahir, Kerstin Bystricky, Anne-Claire Lavigne
摘要

Heterochromatin formation plays a pivotal role in regulating chromatin organization and influences nuclear architecture and genome stability and expression. Amongst the locations where heterochromatin is found, the pericentric regions have the capability to attract the histone variant macroH2A1. However, the factors and mechanisms behind macroH2A1 incorporation into these regions have not been explored. In this study, we probe different conditions that lead to the recruitment of macroH2A1 to pericentromeric regions and elucidate its underlying functions. Through experiments conducted on murine fibroblastic cells, we determine that partial chromatin relaxation resulting from DNA damage, senescence, or histone hyper-acetylation is necessary for the recruitment of macroH2A1 to pericentric regions. Furthermore, macroH2A1 is required for upregulation of noncoding pericentric RNA expression but not for pericentric chromatin organization. Our findings shed light on the functional rather than structural significance of macroH2A1 incorporation into pericentric chromatin.

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抗-兔IgG(全分子)-过氧化物酶 山羊抗, affinity isolated antibody
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抗小鼠IgG(Fab特异性)- 过氧化物酶 山羊抗, affinity isolated antibody, buffered aqueous solution
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抗乙酰组蛋白H3(Lys9)抗体, Upstate®, from rabbit
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抗-macro-H2A1.2抗体,克隆14G7, clone 14G7, from mouse
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抗-HP1α 抗体,克隆15.19s2, clone 15.19s2, Upstate®, from mouse
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抗组蛋白Macro H2A.1抗体, from rabbit, purified by affinity chromatography