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酿酒酵母hpr1δ突变超缺失表型的基因外抑制子的分离与遗传分析。

Isolation and genetic analysis of extragenic suppressors of the hyper-deletion phenotype of the Saccharomyces cerevisiae hpr1 delta mutation.

作者信息

Santos-Rosa H, Aguilera A

机构信息

Departamento de Genética, Facultad de Biología, Universidad de Sevilla, Spain.

出版信息

Genetics. 1995 Jan;139(1):57-66. doi: 10.1093/genetics/139.1.57.

Abstract

The HPR1 gene of Saccharomyces cerevisiae is involved in maintaining low levels of deletions between DNA repeats. To understand how deletions initiate in the absence of the Hpr1 protein and the mechanisms of recombination leading to deletions in S. cerevisiae, we have isolated mutations as suppressors of the hyper-deletion phenotype of the hpr1 delta mutation. The mutations defined five different genes called HRS for hyper-recombination suppression. They suppress the hyper-deletion phenotype of hpr1 delta strains for three direct repeat systems tested. The mutations eliminated the hyper-deletion phenotype of hpr1 delta strains either completely (hrs1-1 and hrs2-1) or significantly (hrs3-1, hrs4-1 and hrs5-1). None of the mutations has a clear effect on the levels of spontaneous and double-strand break-induced deletions. Among other characteristics we have found are the following: (1) one mutation, hrs1-1, reduces the frequency of deletions in rad52-1 strains 20-fold, suggesting that the HRS1 gene is involved in the formation of RAD52-independent deletions; (2) the hrs2-1 hpr1 delta mutant is sensitive to methyl-methane-sulfonate and the single mutants hpr1 delta and hrs2-1 are resistant, which suggests that the HPR1 and HRS2 proteins may have redundant DNA repair functions; (3) the hrs4-1 mutation confers a hyper-mutator phenotype and (4) the phenotype of lack of activation of gene expression observed in hpr1 delta strains is only partially suppressed by the hrs2-1 mutation, which suggests that the possible functions of the Hpr1 protein in gene expression and recombination repair can be separated. We discuss the possible relationship between the HPR1 and the HRS genes and their involvement in initiation of the events responsible for deletion formation.

摘要

酿酒酵母的HPR1基因参与维持DNA重复序列间低水平的缺失。为了了解在缺乏Hpr1蛋白的情况下缺失是如何起始的,以及酿酒酵母中导致缺失的重组机制,我们分离出了作为hpr1δ突变超缺失表型抑制子的突变。这些突变定义了五个不同的基因,称为HRS(超重组抑制)。对于所测试的三个直接重复系统,它们抑制了hpr1δ菌株的超缺失表型。这些突变要么完全消除了hpr1δ菌株的超缺失表型(hrs1 - 1和hrs2 - 1),要么显著消除(hrs3 - 1、hrs4 - 1和hrs5 - 1)。这些突变对自发和双链断裂诱导的缺失水平均无明显影响。我们发现的其他特征如下:(1)一个突变hrs1 - 1使rad52 - 1菌株中的缺失频率降低了20倍,这表明HRS1基因参与了不依赖RAD52的缺失形成;(2)hrs2 - 1 hpr1δ突变体对甲基磺酸甲酯敏感,而单突变体hpr1δ和hrs2 - 1具有抗性,这表明HPR1和HRS2蛋白可能具有冗余的DNA修复功能;(3)hrs4 - 1突变赋予了超突变表型;(4)在hpr1δ菌株中观察到的基因表达缺乏激活的表型仅被hrs2 - 1突变部分抑制,这表明Hpr1蛋白在基因表达和重组修复中的可能功能可以分开。我们讨论了HPR1和HRS基因之间的可能关系以及它们在负责缺失形成的事件起始中的作用。

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