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Positioning Heterochromatin at the Nuclear Periphery Suppresses Histone Turnover to Promote Epigenetic Inheritance

机译:定位核周边的异象素抑制了组蛋白的转变,以促进表观遗传遗传

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In eukaryotes, heterochromatin is generally located at the nuclear periphery. This study investigates the biological significance of perinuclear positioning for heterochromatin maintenance and gene silencing. We identify the nuclear rim protein Amo1(NUPL2) as a factor required for the propagation of heterochromatin at endogenous and ectopic sites in the fission yeast genome. Amo1 associates with the Rix1(PELP1)-containing RNA processing complex RIXC and with the histone chaperone complex FACT. RIXC, which binds to heterochromatin protein Swi6(HP1) across silenced chromosomal domains and to surrounding boundary elements, connects heterochromatin with Amo1 at the nuclear periphery. In turn, the Amo1-enriched subdomain is critical for Swi6 association with FACT that precludes histone turnover to promote gene silencing and preserve epigenetic stability of heterochromatin. In addition to uncovering conserved factors required for perinuclear positioning of heterochromatin, these analyses elucidate a mechanism by which a peripheral subdomain enforces stable gene repression and maintains heterochromatin in a heritable manner.
机译:在真核生物中,异铬胺通常位于核周边。本研究调查了过铬素维持和基因沉默的Perinual核定位的生物学意义。我们将核边缘蛋白质AmO1(Nupl2)识别为裂变酵母基因组在内源性和异位位点在内源性和异位位点繁殖的因素。 amo1与RIX1(PELP1)相关的RNA处理复合RIXC和组蛋白伴侣复杂的事实。 rixc,其与沉默的染色体结构域和周围边界元素相结合的异铬蛋白蛋白SWI6(HP1),将异象酰胺与核周边的amo1连接。反过来,AmO1富含亚域对SWI6关联至关重要,与之排除了组蛋白转余,以促进基因沉默并保留异铬胺的表观遗传稳定性。除了揭示杂核定位所需的保守因子之外,这些分析还阐明外周亚域强制稳定基因抑制并以遗传方式维持异染色质。

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