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MRG 蛋白被具有不同功能的多个蛋白质复合物共享。

MRG Proteins Are Shared by Multiple Protein Complexes With Distinct Functions.

机构信息

St. Patrick Research Group in Basic Oncology, Laval University Cancer Research Center, Oncology Division of CHU de Québec-Université Laval Research Center, Quebec City, Quebec, Canada.

St. Patrick Research Group in Basic Oncology, Laval University Cancer Research Center, Oncology Division of CHU de Québec-Université Laval Research Center, Quebec City, Quebec, Canada; Department of Molecular Medicine, Laval University Cancer Research Center, CHU de Québec-Université Laval Research Center, Big Data Research Center, Université Laval, Quebec City, Quebec, Canada.

出版信息

Mol Cell Proteomics. 2022 Jul;21(7):100253. doi: 10.1016/j.mcpro.2022.100253. Epub 2022 May 28.

Abstract

MRG15/MORF4L1 is a highly conserved protein in eukaryotes that contains a chromodomain (CHD) recognizing methylation of lysine 36 on histone H3 (H3K36me3) in chromatin. Intriguingly, it has been reported in the literature to interact with several different factors involved in chromatin modifications, gene regulation, alternative mRNA splicing, and DNA repair by homologous recombination. To get a complete and reliable picture of associations in physiological conditions, we used genome editing and tandem affinity purification to analyze the stable native interactome of human MRG15, its paralog MRGX/MORF4L2 that lacks the CHD, and MRGBP (MRG-binding protein) in isogenic K562 cells. We found stable interchangeable association of MRG15 and MRGX with the NuA4/TIP60 histone acetyltransferase/chromatin remodeler, Sin3B histone deacetylase/demethylase, ASH1L histone methyltransferase, and PALB2-BRCA2 DNA repair protein complexes. These associations were further confirmed and analyzed by CRISPR tagging of endogenous proteins and comparison of expressed isoforms. Importantly, based on structural information, point mutations could be introduced that specifically disrupt MRG15 association with some complexes but not others. Most interestingly, we also identified a new abundant native complex formed by MRG15/X-MRGBP-BRD8-EP400NL (EP400 N-terminal like) that is functionally similar to the yeast TINTIN (Trimer Independent of NuA4 for Transcription Interactions with Nucleosomes) complex. Our results show that EP400NL, being homologous to the N-terminal region of NuA4/TIP60 subunit EP400, creates TINTIN by competing for BRD8 association. Functional genomics indicate that human TINTIN plays a role in transcription of specific genes. This is most likely linked to the H4ac-binding bromodomain of BRD8 along the H3K36me3-binding CHD of MRG15 on the coding region of transcribed genes. Taken together, our data provide a complete detailed picture of human MRG proteins-associated protein complexes, which are essential to understand and correlate their diverse biological functions in chromatin-based nuclear processes.

摘要

MRG15/MORF4L1 是真核生物中高度保守的蛋白,它含有一个染色质域(CHD),可以识别组蛋白 H3 赖氨酸 36 的甲基化(H3K36me3)。有趣的是,已有文献报道它与参与染色质修饰、基因调控、选择性 mRNA 剪接以及同源重组 DNA 修复的几种不同因子相互作用。为了全面可靠地描绘生理条件下的关联,我们使用基因组编辑和串联亲和纯化技术,在同基因 K562 细胞中分析了人类 MRG15、其缺乏 CHD 的同源物 MRGX/MORF4L2 以及 MRGBP(MRG 结合蛋白)的稳定天然互作组。我们发现 MRG15 和 MRGX 与 NuA4/TIP60 组蛋白乙酰转移酶/染色质重塑酶、Sin3B 组蛋白去乙酰化酶/去甲基化酶、ASH1L 组蛋白甲基转移酶以及 PALB2-BRCA2 DNA 修复蛋白复合物的稳定可互换的关联。这些关联通过内源蛋白的 CRISPR 标记和表达异构体的比较进一步得到了确认和分析。重要的是,根据结构信息,可以引入点突变,特异性破坏 MRG15 与某些复合物的关联,但不影响其他复合物。最有趣的是,我们还鉴定了一个由 MRG15/X-MRGBP-BRD8-EP400NL(EP400N 端样)组成的新的丰富的天然复合物,它在功能上类似于酵母 TINTIN(独立于 NuA4 的三聚体用于转录与核小体的相互作用)复合物。我们的结果表明,EP400NL 与 NuA4/TIP60 亚基 EP400 的 N 端同源,通过竞争 BRD8 的结合来形成 TINTIN。功能基因组学表明,人类 TINTIN 在特定基因的转录中发挥作用。这很可能与 BRD8 上的 H4ac 结合溴结构域以及转录基因上的 MRG15 的 H3K36me3 结合 CHD 有关。综上所述,我们的数据提供了人类 MRG 蛋白相关蛋白复合物的完整详细图片,这对于理解和关联它们在基于染色质的核过程中的多种生物学功能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/129c/9253478/8d4c0cb61dd2/fx1.jpg

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