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KAP-1 Corepressor Protein Interacts and Colocalizes with Heterochromatic and Euchromatic HP1 Proteins: a Potential Role for Krüppel-Associated Box–Zinc Finger Proteins in Heterochromatin-Mediated Gene Silencing

机译:KAP-1 Corepressor蛋白与异色和常色HP1蛋白相互作用并共定位:与Krüppel相关的盒形锌指蛋白在异染色质介导的基因沉默中的潜在作用

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摘要

Krüppel-associated box (KRAB) domains are present in approximately one-third of all human zinc finger proteins (ZFPs) and are potent transcriptional repression modules. We have previously cloned a corepressor for the KRAB domain, KAP-1, which is required for KRAB-mediated repression in vivo. To characterize the repression mechanism utilized by KAP-1, we have analyzed the ability of KAP-1 to interact with murine (M31 and M32) and human (HP1α and HP1γ) homologues of the HP1 protein family, a class of nonhistone heterochromatin-associated proteins with a well-established epigenetic gene silencing function in Drosophila. In vitro studies confirmed that KAP-1 is capable of directly interacting with M31 and hHP1α, which are normally found in centromeric heterochromatin, as well as M32 and hHP1γ, both of which are found in euchromatin. Mapping of the region in KAP-1 required for HP1 interaction showed that amino acid substitutions which abolish HP1 binding in vitro reduce KAP-1 mediated repression in vivo. We observed colocalization of KAP-1 with M31 and M32 in interphase nuclei, lending support to the biochemical evidence that M31 and M32 directly interact with KAP-1. The colocalization of KAP-1 with M31 is sometimes found in subnuclear territories of potential pericentromeric heterochromatin, whereas colocalization of KAP-1 and M32 occurs in punctate euchromatic domains throughout the nucleus. This work suggests a mechanism for the recruitment of HP1-like gene products by the KRAB-ZFP–KAP-1 complex to specific loci within the genome through formation of heterochromatin-like complexes that silence gene activity. We speculate that gene-specific repression may be a consequence of the formation of such complexes, ultimately leading to silenced genes in newly formed heterochromatic chromosomal environments.
机译:克鲁勃相关框(KRAB)域大约存在于所有人类锌指蛋白(ZFP)的三分之一中,并且是有效的转录抑制模块。我们以前已经克隆了KRAB结构域KAP-1的corepressor,这是KRAB介导的体内抑制所必需的。为了表征KAP-1利用的抑制机制,我们分析了KAP-1与HP1蛋白家族(一类与非组蛋白异染色质相关的同系)的鼠类(M31和M32)和人(HP1α和HP1γ)同系物相互作用的能力。果蝇中具有公认的表观遗传基因沉默功能的蛋白质。体外研究证实,KAP-1能够与通常在着丝粒异染色质中发现的M31和hHP1α以及在常染色质中发现的M32和hHP1γ直接相互作用。 HP1相互作用所需的KAP-1中区域的映射显示,在体外废除了HP1结合的氨基酸取代降低了KAP-1介导的体内抑制。我们观察到KAP-1与M31和M32在相间核中共定位,这为M31和M32直接与KAP-1相互作用的生化证据提供了支持。 KAP-1与M31的共定位有时在潜在的着丝粒异染色质的亚核区域中发现,而KAP-1和M32的共定位发生在整个核的点状常色域中。这项工作提出了一种机制,即通过形成使基因活性沉默的异染色质样复合物,KRAB-ZFP-KAP-1复合物将HP1类基因产物募集到基因组内的特定基因座。我们推测基因特异性抑制可能是这种复合物形成的结果,最终导致在新形成的异色染色体环境中沉默的基因。

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