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Does heterochromatin protein 1 always follow code?

机译:异染色质蛋白1是否始终遵循代码?

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Heterochromatin protein 1 (HP1) is a conserved chromosomal protein that participates in chromatin packaging and gene silencing. A loss of HP1 leads to lethality in Drosophila and correlates with metastasis in human breast cancer cells. On Drosophila polytene chromosomes HP1 is localized to centric regions, telo-meric regions, in a banded pattern along the fourth chromosome, and at many sites scattered throughout the euchromatic arms. Recently, one mechanism of HP1 chromosome association was revealed; the amino-terminal chromo domain of HP1 interacts with methylated lysine nine of histone H3, consistent with the histone code hypothesis. Compelling data support this mechanism of HP1 association at centric regions. Is this the only mechanism by which HP1 associates with chromosomes? Interest is now shifting toward the role of HP1 within euchromatic domains. Accumulating evidence in Drosophila and mammals suggests that HP1 associates with chromosomes through interactions with nonhistone chromosomal proteins at locations other than centric heterochromatin. Does HP1 play a similar role in chromatin packaging and gene regulation at these sites as it does in centric heterochromatin? Does HP1 associate with the same proteins at these sites as it does in centric heterochromatin? A first step toward answering these questions is the identification of sequences associated with HP1 within euchromatic domains. Such sequences are likely to include HP1 "target genes" whose discovery will aid in our understanding of HP1 lethality in Drosophila and metastasis of breast cancer cells.
机译:异染色质蛋白1(HP1)是一种保守的染色体蛋白,参与染色质包装和基因沉默。 HP1的丢失导致果蝇致死,并与人类乳腺癌细胞的转移有关。在果蝇多烯染色体上,HP1位于第四个染色体上的带状模式的中心区域,端粒区域,并分散在整个常染色体上。最近,揭示了HP1染色体关联的一种机制。 HP1的氨基末端染色体结构域与组蛋白H3的甲基化赖氨酸9相互作用,这与组蛋白密码假设一致。引人注目的数据支持HP1关联在中心区域的这种机制。这是HP1与染色体缔合的唯一机制吗?现在人们的兴趣转向了在常染色体域中HP1的作用。果蝇和哺乳动物中越来越多的证据表明,HP1通过与非组蛋白染色体蛋白在除中心异染色质以外的位置相互作用而与染色体缔合。 HP1在这些位点的染色质包装和基因调控中是否起到与中心异染色质相似的作用? HP1在这些位点上是否与中心异染色质中的相同蛋白质缔合?回答这些问题的第一步是在常染色体域内鉴定与HP1相关的序列。此类序列可能包含HP1“靶基因”,其发现将有助于我们了解果蝇中HP1的致死性和乳腺癌细胞的转移。

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