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Disruption of an RNA-binding hinge region abolishes LHP1-mediated epigenetic repression

机译:RNA结合铰链区的破坏消除了LHP1介导的表观遗传抑制

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摘要

Epigenetic maintenance of gene repression is essential for development. Polycomb complexes are central to this memory, but many aspects of the underlying mechanism remain unclear. LIKE HETEROCHROMATIN PROTEIN 1 (LHP1) binds Polycomb-deposited H3K27me3 and is required for repression of many Polycomb target genes in Arabidopsis. Here we show that LHP1 binds RNA in vitro through the intrinsically disordered hinge region. By independently perturbing the RNA-binding hinge region and H3K27me3 (trimethylation of histone H3 at Lys27) recognition, we found that both facilitate LHP1 localization and H3K27me3 maintenance. Disruption of the RNA-binding hinge region also prevented formation of subnuclear foci, structures potentially important for epigenetic repression.
机译:基因抑制的表观遗传维持对于发育至关重要。聚梳复合物是这种记忆的核心,但是其潜在机制的许多方面仍不清楚。像杂色质蛋白1(LHP1)结合Polycomb沉积的H3K27me3,是拟南芥中抑制许多Polycomb靶基因所必需的。在这里,我们显示LHP1通过固有的无序铰链区在体外结合RNA。通过独立地干扰RNA结合铰链区和H3K27me3(Lys27处的组蛋白H3的三甲基化)识别,我们发现它们都有助于LHP1的定位和H3K27me3的维持。 RNA结合铰链区的破坏也阻止了亚核灶的形成,这对表观遗传抑制可能很重要。

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