扩展异染色质组装的 HP1a 结合共识和分子语法。

Serafin U Colmenares, Shingo Tsukamoto, Collin Hickmann, Lucy D Brennan, Mohammad Khavani, Mohammad Mofrad, Gary Karpen
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引用次数: 0

摘要

组蛋白 H3 K9 的甲基化及其随后与异染色质蛋白 1(HP1)的结合启动了异染色质核区的形成。反过来,HP1 会招募或结合大量蛋白质,其中许多蛋白质在异染色质的建立或功能中发挥着已知的作用。然而,我们对这些不同的 HP1 伙伴如何在异染色质中组装的了解还很有限。在这里,我们发现果蝇 HP1(HP1a)二聚体中的相互作用因子是通过先前发现的 PxVxL 基序的退化和扩展形式来参与的,我们现在将其称为 HP1a 访问代码(HACs)。这些 HACs 位于异染色质蛋白的无序区域,在果蝇同源物中具有高度的保守性,包含交替的疏水残基,嵌套在一簇带正电荷的氨基酸中。这些发现和分子动力学模拟确定了 HP1a 与 HAC 之间调节 HP1a 结合强度的关键静电相互作用,并提供了一个大幅改进的 HP1a 结合共识图案,可用于确定蛋白质伙伴及其组装成异染色质过程中涉及的分子语法。我们认为HP1a是一种支架蛋白,它通过结合HAC基团来招募或稳定其他异染色质成分,进而调节异染色质的功能和高阶结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expanding the HP1a-binding consensus and molecular grammar for heterochromatin assembly.

The recruitment of Heterochromatin Protein 1 (HP1) partners is essential for heterochromatin assembly and function, yet our knowledge regarding their organization in heterochromatin remains limited. Here we show that interactors engage the Drosophila HP1 (HP1a) dimer through a degenerate and expanded form of the previously identified PxVxL motif, which we now term HP1a Access Codes (HACs). These HACs reside in disordered regions, possess high conservation among Drosophila homologs, and contain alternating hydrophobic residues nested in a cluster of positively charged amino acids. These findings and molecular dynamics simulations identify key electrostatic interactions that modulate HP1a-binding strength and provide a dramatically improved HP1a-binding consensus motif that can reveal protein partners and the molecular grammar involved in heterochromatin assembly. We propose HP1a acts as a scaffold for other heterochromatin components containing HAC motifs, which in turn may regulate the function and higher order structure of the heterochromatin compartment.

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