MUS81 encodes a novel helix-hairpin-helix protein involved in the response to UV- and methylation-induced DNA damage in Saccharomyces cerevisiae.

H Interthal, W D Heyer
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引用次数: 233

Abstract

The gene MUS81 p6ethyl methansulfonate, UV sensitive) was identified as clone 81 in a two-hybrid screen using the Saccharomyces cerevisiae Rad54 protein as a bait. It encodes a novel protein with a predicted molecular mass of 72,316 (632 amino acids) and contains two helix-hairpin-helix motifs, which are found in many proteins involved in DNA metabolism in bacteria, yeast, and mammals. Mus81p also shares homology with motifs found in the XPF endonuclease superfamily. Deletion of MUS81 caused a recessive methyl methansulfonate- and UV-sensitive phenotype. However, mus81delta cells were not significantly more sensitive than wild-type to gamma-radiation or double-strand breaks induced by HO endonuclease. Double mutant analysis suggests that Rad54p and Mus81p act in one pathway for the repair of, or tolerance to, UV-induced DNA damage. A complex containing Mus81p and Rad54p was identified in immunoprecipitation experiments. Deletion of MUS81 virtually eliminated sporulation in one strain background and reduced sporulation and spore viability in another. Potential homologs of Mus81p have been identified in Schizosaccharomyces pombe, Caenorhabditis elegans and Arabidopsis thaliana. We hypothesize that Mus81p plays a role in the recognition and/or processing of certain types of DNA damage (caused by UV and MMS) during repair or tolerance processes involving the recombinational repair pathway.

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MUS81编码一种新的螺旋-发夹-螺旋蛋白,参与对紫外线和甲基化诱导的酿酒酵母DNA损伤的反应。
以酿酒酵母Rad54蛋白为诱饵,在双杂交筛选中鉴定出基因MUS81 p6ethyl methansulfonate, UV敏感)。它编码了一种新的蛋白质,预计分子质量为72,316(632个氨基酸),并包含两个螺旋-发夹-螺旋基序,这些基序存在于细菌、酵母和哺乳动物中许多涉及DNA代谢的蛋白质中。Mus81p也与XPF内切酶超家族中发现的基序具有同源性。MUS81的缺失导致了隐性甲基磺酸和紫外线敏感表型。然而,mus81 δ细胞对γ辐射或HO内切酶诱导的双链断裂的敏感性并没有明显高于野生型。双突变分析表明,Rad54p和Mus81p通过一条途径修复或耐受紫外线诱导的DNA损伤。免疫沉淀实验鉴定了一个含有Mus81p和Rad54p的复合物。MUS81的缺失实际上消除了一种菌株背景下的产孢,降低了另一种菌株背景下的产孢量和孢子活力。Mus81p的潜在同源物已经在pombe Schizosaccharomyces,秀丽隐杆线虫和拟南芥中被鉴定出来。我们假设Mus81p在涉及重组修复途径的修复或耐受过程中,在识别和/或处理某些类型的DNA损伤(由UV和MMS引起)中发挥作用。
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