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多结构域蛋白 Np95 连接 DNA 甲基化和组蛋白修饰。

The multi-domain protein Np95 connects DNA methylation and histone modification.

机构信息

Ludwig Maximilians University Munich, Department of Biology II and Center for Integrated Protein Science Munich, Grosshaderner Str. 2, 82152 Planegg-Martinsried, Germany.

出版信息

Nucleic Acids Res. 2010 Apr;38(6):1796-804. doi: 10.1093/nar/gkp1152. Epub 2009 Dec 21.

Abstract

DNA methylation and histone modifications play a central role in the epigenetic regulation of gene expression and cell differentiation. Recently, Np95 (also known as UHRF1 or ICBP90) has been found to interact with Dnmt1 and to bind hemimethylated DNA, indicating together with genetic studies a central role in the maintenance of DNA methylation. Using in vitro binding assays we observed a weak preference of Np95 and its SRA (SET- and Ring-associated) domain for hemimethylated CpG sites. However, the binding kinetics of Np95 in living cells was not affected by the complete loss of genomic methylation. Investigating further links with heterochromatin, we could show that Np95 preferentially binds histone H3 N-terminal tails with trimethylated (H3K9me3) but not acetylated lysine 9 via a tandem Tudor domain. This domain contains three highly conserved aromatic amino acids that form an aromatic cage similar to the one binding H3K9me3 in the chromodomain of HP1ss. Mutations targeting the aromatic cage of the Np95 tandem Tudor domain (Y188A and Y191A) abolished specific H3 histone tail binding. These multiple interactions of the multi-domain protein Np95 with hemimethylated DNA and repressive histone marks as well as with DNA and histone methyltransferases integrate the two major epigenetic silencing pathways.

摘要

DNA 甲基化和组蛋白修饰在基因表达和细胞分化的表观遗传调控中起着核心作用。最近,Np95(也称为 UHRF1 或 ICBP90)已被发现与 Dnmt1 相互作用,并与半甲基化 DNA 结合,这表明其在维持 DNA 甲基化方面具有核心作用。通过体外结合实验,我们观察到 Np95 及其 SRA(SET 和 Ring 相关)结构域对半甲基化 CpG 位点具有较弱的偏好性。然而,在活细胞中,Np95 的结合动力学不受基因组甲基化完全缺失的影响。进一步研究与异染色质的联系,我们发现 Np95 优先与具有三甲基化(H3K9me3)但不是乙酰化赖氨酸 9 的组蛋白 H3 N 端尾部结合,这是通过串联 Tudor 结构域实现的。该结构域包含三个高度保守的芳香族氨基酸,形成一个芳香族笼,类似于 HP1ss 染色质域中结合 H3K9me3 的芳香族笼。针对 Np95 串联 Tudor 结构域芳香族笼的突变(Y188A 和 Y191A)消除了特定的 H3 组蛋白尾部结合。这种多结构域蛋白 Np95 与半甲基化 DNA 和抑制性组蛋白标记以及与 DNA 和组蛋白甲基转移酶的多种相互作用整合了两种主要的表观遗传沉默途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6369/2847221/75384257db25/gkp1152f1.jpg

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