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RAD6通过组蛋白修饰在重组修复、细胞周期检查点和减数分裂中的作用。

The role of RAD6 in recombinational repair, checkpoints and meiosis via histone modification.

作者信息

Game John C, Chernikova Sophia B

机构信息

Department of Radiation Oncology, Stanford University School of Medicine, Stanford, CA 94305, USA.

出版信息

DNA Repair (Amst). 2009 Apr 5;8(4):470-82. doi: 10.1016/j.dnarep.2009.01.007. Epub 2009 Feb 18.

Abstract

The Rad6 ubiquitin-conjugating enzyme in Saccharomyces cerevisiae is known to interact with three separate ubiquitin ligase proteins (Ubr1, Rad18, and Bre1) specific to different targets. The Rad6/Rad18 complex is central to translesion synthesis and the family of DNA transactions known as post-replication repair (PRR). A less well-known aspect of Rad6-mediated DNA repair, however, involves its function with Bre1 in mono-ubiquitinating the histone H2B residue lysine 123. Here, we review how this ubiquitination impacts histone H3 methylation, and how this in turn impacts the DNA damage response. In S. cerevisiae this pathway is required for checkpoint activation in G1, and contributes to DNA repair via the homologous recombination pathway (HRR) in G2 cells. Thus, RAD6 clearly plays a role in HRR in addition to its central role in PRR. We also summarize what is known about related repair pathways in other eukaryotes, including mammals. Recent literature emphasizes the role of methylated histones in S. cerevisiae, Schizosaccharomyces pombe and mammals in attracting the related DNA damage checkpoint proteins Rad9, Crb2 and 53BP1, respectively, to chromatin at the sites of DNA double-strand breaks. However, the specific histone modification pathways involved diverge in these different eukaryotes.

摘要

已知酿酒酵母中的Rad6泛素缀合酶可与三种分别针对不同靶标的泛素连接酶蛋白(Ubr1、Rad18和Bre1)相互作用。Rad6/Rad18复合物对于跨损伤合成以及被称为复制后修复(PRR)的DNA交易家族至关重要。然而,Rad6介导的DNA修复中一个不太为人所知的方面涉及其与Bre1共同作用,将组蛋白H2B残基赖氨酸123单泛素化。在这里,我们综述这种泛素化如何影响组蛋白H3甲基化,以及这又如何反过来影响DNA损伤反应。在酿酒酵母中,该途径是G1期检查点激活所必需的,并通过G2期细胞中的同源重组途径(HRR)促进DNA修复。因此,RAD6除了在PRR中起核心作用外,显然在HRR中也发挥作用。我们还总结了关于其他真核生物(包括哺乳动物)中相关修复途径的已知情况。最近的文献强调了酿酒酵母、粟酒裂殖酵母和哺乳动物中甲基化组蛋白分别在将相关DNA损伤检查点蛋白Rad9、Crb2和53BP1吸引到DNA双链断裂位点的染色质上所起的作用。然而,这些不同真核生物中涉及的具体组蛋白修饰途径有所不同。

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