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Human origin recognition complex is essential for HP1 binding to chromatin and heterochromatin organization

机译:人类起源识别复合物对于HP1与染色质和异染色质的结合至关重要

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摘要

The origin recognition complex (ORC) is a DNA replication initiator protein also known to be involved in diverse cellular functions including gene silencing, sister chromatid cohesion, telomere biology, heterochromatin localization, centromere and centrosome activity, and cytokinesis. We show that, in human cells, multiple ORC subunits associate with hetereochromatin protein 1 (HP1) α- and HP1β-containing heterochromatic foci. Fluorescent bleaching studies indicate that multiple subcomplexes of ORC exist at heterochromatin, with Orc1 stably associating with heterochromatin in G1 phase, whereas other ORC subunits have transient interactions throughout the cell-division cycle. Both Orc1 and Orc3 directly bind to HP1α, and two domains of Orc3, a coiled-coil domain and a mod-interacting region domain, can independently bind to HP1α; however, both are essential for in vivo localization of Orc3 to heterochromatic foci. Direct binding of both Orc1 and Orc3 to HP1 suggests that, after the degradation of Orc1 at the G1/S boundary, Orc3 facilitates assembly of ORC/HP1 proteins to chromatin. Although depletion of Orc2 and Orc3 subunits by siRNA caused loss of HP1α association to heterochromatin, loss of Orc1 and Orc5 caused aberrant HP1α distribution only to pericentric heterochromatin-surrounding nucleoli. Depletion of HP1α from human cells also shows loss of Orc2 binding to heterochromatin, suggesting that ORC and HP1 proteins are mutually required for each other to bind to heterochromatin. Similar to HP1α-depleted cells, Orc2 and Orc3 siRNA-treated cells also show loss of compaction at satellite repeats, suggesting that ORC together with HP1 proteins may be involved in organizing higher-order chromatin structure and centromere function.
机译:起源识别复合物(ORC)是一种DNA复制起始蛋白,也已知参与多种细胞功能,包括基因沉默,姐妹染色单体凝聚力,端粒生物学,异染色质定位,着丝粒和着丝粒活性以及胞质分裂。我们显示,在人类细胞中,多个ORC亚基与异染色质蛋白1(HP1)α-和HP1β含杂色病灶相关。荧光漂白研究表明,异染色质中存在ORC的多个亚复合体,而Orc1在G1期与异染色质稳定地缔合,而其他ORC亚基在整个细胞分裂周期中均具有短暂的相互作用。 Orc1和Orc3都直接与HP1α结合,而Orc3的两个结构域,即卷曲螺旋结构域和mod相互作用区域结构域,可以独立地与HP1α结合。然而,两者对于将Orc3体内定位到异色病灶都是必不可少的。 Orc1和Orc3与HP1的直接结合表明,在G1 / S边界处的Orc1降解之后,Orc3促进了ORC / HP1蛋白组装到染色质上。尽管siRNA消耗Orc2和Orc3亚基会导致HP1α与异染色质的缔合缺失,但Orc1和Orc5的缺失仅导致HP1α异常分布于周围的异染色质周围核仁。人类细胞中HP1α的消耗也显示Orc2与异染色质的结合丧失,这表明ORC和HP1蛋白是彼此相互结合至异染色质的必需条件。与HP1α耗竭的细胞相似,Orc2和Orc3 siRNA处理的细胞在卫星重复序列上也显示出紧密性的丧失,这表明ORC与HP1蛋白质一起可能参与了组织更高级的染色质结构和着丝粒功能。

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