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组蛋白变体 H3.3 突变在哺乳动物染色质功能定义中的作用。

Histone Variant H3.3 Mutations in Defining the Chromatin Function in Mammals.

机构信息

Genome Biology Unit, European Molecular Biology Laboratory (EMBL), 69117 Heidelberg, Germany.

Collaboration for Joint PhD Degree between EMBL and Heidelberg University, Faculty of Biosciences, 69117 Heidelberg, Germany.

出版信息

Cells. 2020 Dec 18;9(12):2716. doi: 10.3390/cells9122716.

Abstract

The systematic mutation of histone 3 (H3) genes in model organisms has proven to be a valuable tool to distinguish the functional role of histone residues. No system exists in mammalian cells to directly manipulate canonical histone H3 due to a large number of clustered and multi-loci histone genes. Over the years, oncogenic histone mutations in a subset of H3 have been identified in humans, and have advanced our understanding of the function of histone residues in health and disease. The oncogenic mutations are often found in one allele of the histone variant H3.3 genes, but they prompt severe changes in the epigenetic landscape of cells, and contribute to cancer development. Therefore, mutation approaches using H3.3 genes could be relevant to the determination of the functional role of histone residues in mammalian development without the replacement of canonical H3 genes. In this review, we describe the key findings from the H3 mutation studies in model organisms wherein the genetic replacement of canonical H3 is possible. We then turn our attention to H3.3 mutations in human cancers, and discuss H3.3 substitutions in the N-terminus, which were generated in order to explore the specific residue or associated post-translational modification.

摘要

在模式生物中,组蛋白 3(H3)基因的系统突变已被证明是区分组蛋白残基功能作用的有效工具。由于大量聚集和多基因座的组蛋白基因,哺乳动物细胞中不存在直接操纵典型组蛋白 H3 的系统。多年来,在人类中发现了一组 H3 中的致癌组蛋白突变,这提高了我们对组蛋白残基在健康和疾病中的功能的理解。致癌突变通常发生在组蛋白变体 H3.3 基因的一个等位基因中,但它们会引起细胞表观遗传景观的严重变化,并促进癌症的发展。因此,使用 H3.3 基因的突变方法可能与确定哺乳动物发育过程中组蛋白残基的功能作用有关,而无需替换典型的 H3 基因。在这篇综述中,我们描述了在可能进行典型 H3 基因遗传替换的模式生物中 H3 突变研究的关键发现。然后,我们将注意力转向人类癌症中的 H3.3 突变,并讨论 N 端的 H3.3 取代,这些取代是为了探索特定的残基或相关的翻译后修饰而产生的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2376/7766983/5d320dbeb485/cells-09-02716-g001.jpg

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