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Mms2 在控制自发突变和 Pol3 丰度方面的新作用。

A novel role for Mms2 in the control of spontaneous mutagenesis and Pol3 abundance.

机构信息

Laboratory of Mutagenesis and DNA Damage Tolerance, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 02-106 Warsaw, Poland.

Laboratory of Mutagenesis and DNA Damage Tolerance, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 02-106 Warsaw, Poland.

出版信息

DNA Repair (Amst). 2023 May;125:103484. doi: 10.1016/j.dnarep.2023.103484. Epub 2023 Mar 13.

Abstract

Mms2 is a ubiquitin E2-variant protein with a very well-documented function in the tolerance pathway that protects both human and yeast cells from the lethal and mutagenic effects of DNA damage. Interestingly, a high expression level of human MMS2 is associated with poor survival prognosis in different cancer diseases. Here we have analyzed the physiological effects of Mms2 overproduction in yeast cells. We show that an increased level of this protein causes a spontaneous mutator effect independent of Ubc13, a cognate partner of Mms2 in the PCNA-polyubiquitinating complex responsible for the template switch. Instead, this new promutagenic role of Mms2 requires Ubc4 (E2) and two ubiquitin ligases of HECT and RING families, Rsp5 and Not4, respectively. We have established that the promutagenic activity of Mms2 is dependent on the activities of error-prone DNA polymerase ζ and Rev1. Additionally, it requires the ubiquitination of K164 in PCNA which facilitates recruitment of these translesion polymerases to the replication complex. Importantly, we have established also that the cellular abundance of Mms2 influences the cellular level of Pol3, the catalytic subunit of replicative DNA polymerase δ. Lack of Mms2 increases the Pol3 abundance, whereas in response to Mms2 overproduction the Pol3 level decreases. We hypothesize that increased levels of spontaneous mutagenesis may result from the Mms2-induced reduction in Pol3 accumulation leading to increased participation of error-prone polymerase ζ in the replication complex.

摘要

Mms2 是一种泛素 E2 变体蛋白,在耐受途径中具有很好的功能记录,可保护人类和酵母细胞免受 DNA 损伤的致死和诱变作用。有趣的是,人类 Mms2 的高表达水平与不同癌症疾病中的不良生存预后相关。在这里,我们分析了酵母细胞中 Mms2 过度表达的生理效应。我们表明,这种蛋白质水平的增加会导致自发突变效应,而与 Ubc13 无关,Ubc13 是 PCNA 多泛素化复合物中 Mms2 的同源伴侣,负责模板转换。相反,Mms2 的这种新的促突变作用需要 Ubc4(E2)和两种泛素连接酶的 HECT 和 RING 家族,分别为 Rsp5 和 Not4。我们已经确定 Mms2 的促突变活性依赖于易错 DNA 聚合酶 ζ 和 Rev1 的活性。此外,它需要 PCNA 中 K164 的泛素化,这有助于将这些跨损伤聚合酶募集到复制复合物中。重要的是,我们还确定了 Mms2 的细胞丰度会影响复制 DNA 聚合酶 δ 的催化亚基 Pol3 的细胞水平。Mms2 的缺乏会增加 Pol3 的丰度,而 Mms2 过度表达会导致 Pol3 水平降低。我们假设自发突变率的增加可能是由于 Mms2 诱导的 Pol3 积累减少导致易错聚合酶 ζ 更多地参与复制复合物。

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