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BRCA2 表达对酿酒酵母自发同源重组和 DNA 损伤诱导核焦点的影响。

Effect of the expression of BRCA2 on spontaneous homologous recombination and DNA damage-induced nuclear foci in Saccharomyces cerevisiae.

机构信息

Laboratory of Genome Technology and Integrative Systems Biology, Institute of Clinical Physiology, CNR, Pisa, Italy.

出版信息

Mutagenesis. 2013 Mar;28(2):187-95. doi: 10.1093/mutage/ges069. Epub 2013 Jan 16.

Abstract

The tumour-suppressor gene BRCA2 has been demonstrated to be involved in maintenance of genome integrity by affecting DNA double-strand break repair and homologous recombination. Protein-truncating mutations in BRCA2 predispose women to early onset breast and ovarian cancers and account for 15-30% of familial breast cancer risk. In contrast, the human cancer risk due to missense mutations, intronic variants, and in-frame deletions and insertions in the BRCA2 gene, called unclassified variants, has not been determined. Here, we want to define if the yeast Saccharomyces cerevisiae is a good model to study the role of BRCA2 in DNA recombination and repair and to characterise the unclassified BRCA2 missense variants. Therefore, we expressed the wild-type BRCA2 in yeast and determined the effect of BRCA2 on yeast homologous recombination, methyl methanesulphonate (MMS)-induced Rad51 and Rad52 foci and MMS sensitivity. The expression of BRCA2 induces a high increase in both intra- and inter-recombination events and confers a higher MMS resistance as compared with the negative control. This may suggest that BRCA2 gets involved in DNA repair pathways in yeast. Moreover, the expression of BRCA2 did not affect the number of cells carrying Rad51 or Rad52 nuclear foci. Finally, we aimed to investigate if yeast could be reliable system to set up a functional assay to distinguish a mutated protein from a neutral polymorphism. Therefore, we have expressed two neutral (M1915T and A2951T) and one pathogenic variant (G2748D) in yeast and checked the effect on recombination. The neutral M1915T variant increased intra-chromosomal recombination by almost 2-fold and the other neutral A2975T variant increased intra-chromosomal recombination 2.5-fold as compared with the control. On the other end, the pathogenic variant G2748D did not increase intra- and inter-chromosomal recombination in yeast and, consequently, confers a phenotype very different from the wild-type BRCA2. Moreover, we have also evaluated whether the expression of the selected unclassified variants affects homologous recombination in yeast. Results indicated that the expression of the selected BRCA2 variants differentially affects yeast recombination suggesting that yeast could be a very promising genetic system to characterise BRCA2 missense variants.

摘要

抑癌基因 BRCA2 已被证明通过影响 DNA 双链断裂修复和同源重组来维持基因组完整性。BRCA2 蛋白截断突变使女性易患早发性乳腺癌和卵巢癌,并占家族性乳腺癌风险的 15-30%。相比之下,BRCA2 基因中的错义突变、内含子变体、框内缺失和插入,即未分类变体,导致的人类癌症风险尚未确定。在这里,我们希望确定酿酒酵母是否是研究 BRCA2 在 DNA 重组和修复中的作用以及表征未分类 BRCA2 错义变体的良好模型。因此,我们在酵母中表达野生型 BRCA2,并确定 BRCA2 对酵母同源重组、甲基甲磺酸(MMS)诱导的 Rad51 和 Rad52 焦点以及 MMS 敏感性的影响。与阴性对照相比,BRCA2 的表达会导致同源重组和非同源重组事件的大量增加,并赋予更高的 MMS 抗性。这可能表明 BRCA2 参与了酵母中的 DNA 修复途径。此外,BRCA2 的表达并不影响携带 Rad51 或 Rad52 核焦点的细胞数量。最后,我们旨在研究酵母是否可以成为一种可靠的系统,建立一种功能测定来区分突变蛋白和中性多态性。因此,我们在酵母中表达了两个中性(M1915T 和 A2951T)和一个致病性变体(G2748D),并检查了对重组的影响。中性 M1915T 变体使染色体内重组增加近 2 倍,另一个中性 A2975T 变体使染色体内重组增加 2.5 倍,而对照则没有。另一方面,致病性变体 G2748D 不会增加酵母中的染色体内和染色体间重组,因此与野生型 BRCA2 的表型非常不同。此外,我们还评估了所选未分类变体的表达是否会影响酵母中的同源重组。结果表明,所选 BRCA2 变体的表达会影响酵母的重组,这表明酵母可能是一个非常有前途的遗传系统,用于表征 BRCA2 错义变体。

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