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人 CBX 色氨酸结构域的识别和特异性决定因素。

Recognition and specificity determinants of the human cbx chromodomains.

机构信息

Ontario Cancer Institute, Campbell Family Cancer Research Institute and Department of Medical Biophysics, University of Toronto, Ontario M5G 1L7, Canada.

出版信息

J Biol Chem. 2011 Jan 7;286(1):521-9. doi: 10.1074/jbc.M110.191411. Epub 2010 Nov 3.

Abstract

The eight mammalian Cbx proteins are chromodomain-containing proteins involved in regulation of heterochromatin, gene expression, and developmental programs. They are evolutionarily related to the Drosophila HP1 (dHP1) and Pc (dPc) proteins that are key components of chromatin-associated complexes capable of recognizing repressive marks such as trimethylated Lys-9 and Lys-27, respectively, on histone H3. However, the binding specificity and function of the human homologs, Cbx1-8, remain unclear. To this end we employed structural, biophysical, and mutagenic approaches to characterize the molecular determinants of sequence contextual methyllysine binding to human Cbx1-8 proteins. Although all three human HP1 homologs (Cbx1, -3, -5) replicate the structural and binding features of their dHP counterparts, the five Pc homologs (Cbx2, -4, -6, -7, -8) bind with lower affinity to H3K9me3 or H3K27me3 peptides and are unable to distinguish between these two marks. Additionally, peptide permutation arrays revealed a greater sequence tolerance within the Pc family and suggest alternative nonhistone sequences as potential binding targets for this class of chromodomains. Our structures explain the divergence of peptide binding selectivity in the Pc subfamily and highlight previously unrecognized features of the chromodomain that influence binding and specificity.

摘要

八种哺乳动物的 Cbx 蛋白是含有 chromodomain 的蛋白,参与异染色质、基因表达和发育程序的调控。它们与果蝇的 HP1(dHP1)和 Pc(dPc)蛋白在进化上有关,后者是能够识别组蛋白 H3 上分别为三甲基化 Lys-9 和 Lys-27 等抑制性标记的染色质相关复合物的关键成分。然而,人类同源物 Cbx1-8 的结合特异性和功能仍不清楚。为此,我们采用结构、生物物理和诱变方法来表征序列上下文甲基赖氨酸与人类 Cbx1-8 蛋白结合的分子决定因素。尽管所有三种人类 HP1 同源物(Cbx1、-3、-5)都复制了它们的 dHP 对应物的结构和结合特征,但五个 Pc 同源物(Cbx2、-4、-6、-7、-8)对 H3K9me3 或 H3K27me3 肽的结合亲和力较低,并且无法区分这两种标记。此外,肽置换阵列显示 Pc 家族内的序列容忍度更高,并暗示替代的非组蛋白序列可能是这类 chromodomain 的潜在结合靶标。我们的结构解释了 Pc 亚家族中肽结合选择性的差异,并突出了 chromodomain 以前未被识别的特征,这些特征影响结合和特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5a0/3013012/fe98d01e0556/zbc0051145860001.jpg

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