Department of Molecular Biology, College of Agriculture, University of Wyoming, 1000 E. University Ave., Laramie, WY 82071, USA.
Biol Chem. 2012 Jan;393(1-2):47-61. doi: 10.1515/BC-2011-216.
Although the existence of histone variants has been known for quite some time, only recently are we grasping the breadth and diversity of the cellular processes in which they are involved. Of particular interest are the two variants of histone H2A, H2A.Z and H2A.X because of their roles in regulation of gene expression and in DNA double-strand break repair, respectively. We hypothesize that nucleosomes containing these variants may perform their distinct functions by interacting with different sets of proteins. Here, we present our proteome analysis aimed at identifying protein partners that interact with nucleosomes containing H2A.Z, H2A.X or their canonical H2A counterpart. Our development of a nucleosome-pull down assay and analysis of the recovered nucleosome-interacting proteins by mass spectrometry allowed us to directly compare nuclear partners of these variant-containing nucleosomes to those containing canonical H2A. To our knowledge, our data represent the first systematic analysis of the H2A.Z and H2A.X interactome in the context of nucleosome structure.
尽管组蛋白变体的存在已经为人所知了相当长一段时间,但直到最近我们才开始理解它们所涉及的细胞过程的广度和多样性。特别引人关注的是组蛋白 H2A 的两种变体,H2A.Z 和 H2A.X,因为它们分别在基因表达调控和 DNA 双链断裂修复中发挥作用。我们假设含有这些变体的核小体可能通过与不同的蛋白质组相互作用来发挥其独特的功能。在这里,我们展示了我们的蛋白质组分析,旨在鉴定与含有 H2A.Z、H2A.X 或其典型 H2A 对应物的核小体相互作用的蛋白质伴侣。我们开发了核小体下拉测定法,并通过质谱分析回收的核小体相互作用蛋白,使我们能够直接比较这些变体核小体与含有典型 H2A 的核小体的核伴侣。据我们所知,我们的数据代表了在核小体结构背景下对 H2A.Z 和 H2A.X 相互作用组的首次系统分析。