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MRG15 通过将 PALB2 固定在未受干扰的染色质上来保护活跃基因免受遗传毒性应激。

MRG15-mediated tethering of PALB2 to unperturbed chromatin protects active genes from genotoxic stress.

机构信息

Sir William Dunn School of Pathology, University of Oxford, Oxford, OX1 3RE, United Kingdom.

Research Center for Epigenetic Disease, Graduate School of Frontier Sciences, The University of Tokyo, Tokyo 113-0032, Japan.

出版信息

Proc Natl Acad Sci U S A. 2017 Jul 18;114(29):7671-7676. doi: 10.1073/pnas.1620208114. Epub 2017 Jul 3.

Abstract

The partner and localiser of BRCA2 (PALB2) plays important roles in the maintenance of genome integrity and protection against cancer. Although PALB2 is commonly described as a repair factor recruited to sites of DNA breaks, recent studies provide evidence that PALB2 also associates with unperturbed chromatin. Here, we investigated the previously poorly described role of chromatin-associated PALB2 in undamaged cells. We found that PALB2 associates with active genes through its major binding partner, MRG15, which recognizes histone H3 trimethylated at lysine 36 (H3K36me3) by the SETD2 methyltransferase. Missense mutations that ablate PALB2 binding to MRG15 confer elevated sensitivity to the topoisomerase inhibitor camptothecin (CPT) and increased levels of aberrant metaphase chromosomes and DNA stress in gene bodies, which were suppressed by preventing DNA replication. Remarkably, the level of PALB2 at genic regions was frequently decreased, rather than increased, upon CPT treatment. We propose that the steady-state presence of PALB2 at active genes, mediated through the SETD2/H3K36me3/MRG15 axis, ensures an immediate response to DNA stress and therefore effective protection of these regions during DNA replication. This study provides a conceptual advance in demonstrating that the constitutive chromatin association of repair factors plays a key role in the maintenance of genome stability and furthers our understanding of why PALB2 defects lead to human genome instability syndromes.

摘要

BRCA2(PALB2)的伴侣和定位蛋白在维持基因组完整性和预防癌症方面发挥着重要作用。虽然 PALB2 通常被描述为一种招募到 DNA 断裂部位的修复因子,但最近的研究提供了证据表明,PALB2 也与未受干扰的染色质相关联。在这里,我们研究了以前描述较少的染色质相关 PALB2 在未受损细胞中的作用。我们发现,PALB2 通过其主要结合伴侣 MRG15 与活性基因相关联,MRG15 通过 SETD2 甲基转移酶识别组蛋白 H3 赖氨酸 36 三甲基化(H3K36me3)。消除 PALB2 与 MRG15 结合的错义突变赋予了对拓扑异构酶抑制剂喜树碱(CPT)的敏感性增加,并增加了基因体中异常中期染色体和 DNA 应激的水平,而这些水平可以通过阻止 DNA 复制来抑制。值得注意的是,CPT 处理后,基因区域的 PALB2 水平经常降低,而不是增加。我们提出,通过 SETD2/H3K36me3/MRG15 轴介导的 PALB2 在活性基因上的稳定存在,确保了对 DNA 应激的即时反应,从而在 DNA 复制过程中有效地保护了这些区域。这项研究提供了一个概念上的进展,证明修复因子的组成性染色质关联在维持基因组稳定性方面起着关键作用,并进一步加深了我们对为什么 PALB2 缺陷导致人类基因组不稳定综合征的理解。

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