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巨核组蛋白H2A1的组蛋白结构域包含几个分散的元件,每个元件都足以指导其在失活的X染色体上富集。

The histone domain of macroH2A1 contains several dispersed elements that are each sufficient to direct enrichment on the inactive X chromosome.

作者信息

Nusinow Dmitri A, Sharp Judith A, Morris Alana, Salas Sonia, Plath Kathrin, Panning Barbara

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco, CA 94143, USA.

出版信息

J Mol Biol. 2007 Aug 3;371(1):11-8. doi: 10.1016/j.jmb.2007.05.063. Epub 2007 May 26.

Abstract

Histone variants replace the core histones in a substantial fraction of nucleosomes, affecting chromatin structure and impacting chromatin-templated processes. In many instances incorporation of histone variants results in formation of specialized regions of chromatin. Proper localization of histone variants to distinct regions of the genome is critical for their function, yet how this specific localization is achieved remains unclear. macroH2A1 is enriched on the inactive X chromosome in female mammalian cells, where it functions to maintain gene silencing. macroH2A1 consists of a histone H2A-like histone domain and a large, globular C-terminal macro domain that is not present in other histone proteins. The histone domain of macroH2A1 is alone sufficient to direct enrichment on the inactive X chromosome when expressed in female cells, indicating that sequences important for correct localization lie in this domain. Here we investigate whether divergent sequences of the H2A variant macroH2A1 contribute to its correct localization. We mapped the regions of the macroH2A1 histone domain that are sufficient for localization to the inactive X chromosome using chimeras between H2A and the histone domain of macroH2A1. Multiple short sequences dispersed along the macroH2A1 histone domain individually supported enrichment on the inactive X chromosome when introduced into H2A. These sequences map to the surface of the macroH2A1/H2B dimer, but are buried in the crystal structure of the macroH2A1 containing nucleosome, suggesting that they may contribute to recognition by macroH2A1/H2B deposition factors.

摘要

组蛋白变体在相当一部分核小体中取代核心组蛋白,影响染色质结构并影响以染色质为模板的过程。在许多情况下,组蛋白变体的掺入导致染色质特殊区域的形成。组蛋白变体在基因组不同区域的正确定位对其功能至关重要,但这种特定定位是如何实现的仍不清楚。macroH2A1在雌性哺乳动物细胞的失活X染色体上富集,在那里它起到维持基因沉默的作用。macroH2A1由一个类似组蛋白H2A的组蛋白结构域和一个大的球状C端macro结构域组成,该结构域在其他组蛋白中不存在。当在雌性细胞中表达时,macroH2A1的组蛋白结构域单独就足以指导其在失活X染色体上的富集,这表明对正确定位重要的序列位于该结构域中。在这里,我们研究H2A变体macroH2A1的不同序列是否有助于其正确定位。我们使用H2A和macroH2A1的组蛋白结构域之间的嵌合体,绘制了macroH2A1组蛋白结构域中足以定位到失活X染色体的区域。当引入H2A时,沿着macroH2A1组蛋白结构域分散的多个短序列各自支持在失活X染色体上的富集。这些序列映射到macroH2A1/H2B二聚体的表面,但在含有核小体的macroH2A1的晶体结构中被掩埋,这表明它们可能有助于被macroH2A1/H2B沉积因子识别。

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