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DNA 修复蛋白 SHPRH 是一种核小体刺激的 ATP 酶和核小体-E3 泛素连接酶。

The DNA repair protein SHPRH is a nucleosome-stimulated ATPase and a nucleosome-E3 ubiquitin ligase.

机构信息

Institut für Molekularbiologie und Tumorforschung (IMT), Biomedizinisches Forschungszentrum, Philipps-Universität Marburg, Hans-Meerwein-Strasse 2, 35043, Marburg, Germany.

Fachbereich Chemie und Synmikro, Gerätezentrum Massenspektrometrie und Elementanalaytik, Philipps-Universität Marburg, Hans-Meerwein-Strasse 4, 35043, Marburg, Germany.

出版信息

Epigenetics Chromatin. 2019 Aug 21;12(1):52. doi: 10.1186/s13072-019-0294-5.

Abstract

BACKGROUND

Maintenance of genome integrity during DNA replication is crucial to the perpetuation of all organisms. In eukaryotes, the bypass of DNA lesions by the replication machinery prevents prolonged stalling of the replication fork, which could otherwise lead to greater damages such as gross chromosomal rearrangements. Bypassing DNA lesions and subsequent repair are accomplished by the activation of DNA damage tolerance pathways such as the template switching (TS) pathway. In yeast, the RAD5 (Radiation-sensitive 5) protein plays a crucial role in initiating the TS pathway by catalyzing the polyubiquitination of PCNA (Proliferation Cell Nuclear Antigen). Likewise, one of the mammalian RAD5-homologs, SHPRH (SNF2, histone linker, PHD, RING, helicase) mediates PCNA polyubiquitination. To date, the study of SHPRH enzymatic functions has been limited to this modification. It is therefore unclear how SHPRH carries out its function in DNA repair. Moreover, how this protein regulates gene transcription at the enzymatic level is also unknown.

RESULTS

Given that SHPRH harbors domains found in chromatin remodeling proteins, we investigated its biochemical properties in the presence of nucleosomal substrates. We find that SHPRH binds equally well to double-stranded (ds) DNA and to nucleosome core particles, however, like ISWI and CHD-family remodelers, SHPRH shows a strong preference for nucleosomes presenting extranucleosomal DNA. Moreover, nucleosomes but not dsDNA strongly stimulate the ATPase activity of SHPRH. Intriguingly, unlike typically observed with SNF2-family enzymes, ATPase activity does not translate into conventional nucleosome remodeling, under standard assay conditions. To test whether SHPRH can act as a ubiquitin E3 ligase for nucleosomes, we performed a screen using 26 E2-conjugating enzymes. We uncover that SHPRH is a potent nucleosome E3-ubiquitin-ligase that can function with at least 7 different E2s. Mass spectrometry analyses of products generated in the presence of the UBE2D1-conjugating enzyme reveal that SHPRH can catalyze the formation of polyubiquitin linkages that are either branched or associated with the recruitment of DNA repair factors, as well as linkages involved in proteasomal degradation.

CONCLUSIONS

We propose that, in addition to polyubiquitinating PCNA, SHPRH promotes DNA repair or transcriptional regulation in part through chromatin ubiquitination. Our study sets a biochemical framework for studying other RAD5- and RAD16-related protein functions through the ubiquitination of nucleosomes.

摘要

背景

在 DNA 复制过程中维持基因组完整性对于所有生物体的延续至关重要。在真核生物中,复制机制对 DNA 损伤的绕过可防止复制叉的长时间停滞,否则这可能导致更大的损伤,如染色体大片段重排。通过激活 DNA 损伤容忍途径,如模板转换(TS)途径,可以绕过 DNA 损伤并进行后续修复。在酵母中,RAD5(辐射敏感 5)蛋白通过催化 PCNA(增殖细胞核抗原)的多泛素化,在启动 TS 途径中起着至关重要的作用。同样,哺乳动物 RAD5 同源物之一 SHPRH(SNF2、组蛋白连接、PHD、RING、解旋酶)介导 PCNA 的多泛素化。迄今为止,对 SHPRH 酶功能的研究仅限于此修饰。因此,尚不清楚 SHPRH 如何在 DNA 修复中发挥其功能。此外,该蛋白如何在酶水平上调节基因转录也不清楚。

结果

鉴于 SHPRH 具有染色质重塑蛋白中发现的结构域,我们在存在核小体底物的情况下研究了其生化特性。我们发现 SHPRH 与双链(ds)DNA 和核小体核心颗粒同样结合良好,然而,与 ISWI 和 CHD 家族重塑剂一样,SHPRH 对呈现额外核小体 DNA 的核小体表现出强烈的偏好。此外,核小体而非 dsDNA 强烈刺激 SHPRH 的 ATP 酶活性。有趣的是,与通常观察到的 SNF2 家族酶不同,在标准测定条件下,ATP 酶活性不会转化为传统的核小体重塑。为了测试 SHPRH 是否可以作为核小体的泛素 E3 连接酶,我们使用 26 种 E2 连接酶进行了筛选。我们发现 SHPRH 是一种有效的核小体 E3-泛素连接酶,它可以与至少 7 种不同的 E2 一起发挥作用。在存在 UBE2D1 连接酶的情况下生成的产物的质谱分析表明,SHPRH 可以催化形成多泛素连接,这些连接要么是分支的,要么与招募 DNA 修复因子相关,以及与蛋白酶体降解相关的连接。

结论

我们提出,除了多泛素化 PCNA 之外,SHPRH 还通过核小体泛素化促进 DNA 修复或转录调控。我们的研究为通过核小体的泛素化研究其他 RAD5 和 RAD16 相关蛋白的功能建立了生化框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1177/6702750/eb6415ec0b50/13072_2019_294_Fig1_HTML.jpg

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