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PMID: 22679780 已发表 · ppublish rus

[Interaction of the HSM3 gene with genes initiating homologous recombination repair in yeast Saccharomyces cerevisiae].

Genetika ·第 48 卷 ·第 3 期 ·2012-07-31

Chernenkov A Iu, Fedorov D V, Gracheva L M, Evstukhina T A, Koval'tsova S V, Peshekhonov V T, Fedorova I V, Korolev V G

摘要

It was assumed previously that the mutator phenotype of the hms3 mutant was determined by processes taking place in the D-loop. As a next step, genetic analysis was performed to study the interactions between the hsm3 mutation and mutations of the genes that control the initial steps of the D-loop formation. The mutations of the MMS4 and XRS2 genes, which initiate the double-strand break formation and subsequent repair, were shown to completely block HSM3-dependent UV-induced mutagenesis. Mutations of the RAD51, RAD52, and RAD54 genes, which are also involved in the D-loop formation, only slightly decreased the level of UV-induced mutagenesis in the hsm3 mutant. Similar results were observed for the interaction of hsm3 with the mph1 mutation, which stabilizes the D-loop. In contrast, the shu1 mutation, which destabilizes the D-loop structure, led to an extremely high level of UV-induced mutagenesis and displayed epistatic interactions with the hsm3 mutation. The results made it possible to assume that the hsm3 mutation destabilizes the D-loop, which is a key substrate of both Rad5- and Rad52-dependent postreplicative repair pathways.

文献信息
期刊
Genetika
期刊简称
Genetika
ISSN
0016-6758
发表日期
2012-07-31
收录日期
2012-06-11
更新日期
2012-06-11
语言
rus
国家/地区
Russia (Federation)
NLM ID
0047354
外部链接
PubMed 原文
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