Centro de Estudios Fotosintéticos y Bioquímicos CEFOBI, Facultad de Ciencias Bioquímicas y Farmacéuticas, Universidad Nacional de Rosario, Suipacha 531, 2000 Rosario, Argentina.
DNA Repair (Amst). 2013 Apr 1;12(4):257-64. doi: 10.1016/j.dnarep.2013.01.002. Epub 2013 Feb 4.
Genetic stability depends in part on an efficient DNA lesion recognition and correction by the DNA mismatch repair (MMR) system. In eukaryotes, MMR is initiated by the binding of heterodimeric MutS homologue (MSH) complexes, MSH2-MSH6 and MSH2-MSH3, which recognize and bind mismatches and unpaired nucleotides. Plants encode another mismatch recognition protein, named MSH7. MSH7 forms a heterodimer with MSH2 and the protein complex is designated MutSγ. We here report the effect the expression of Arabidopsis MSH2 and MSH7 alone or in combination exert on the genomic stability of Saccharomyces cerevisiae. AtMSH2 and AtMutSγ proteins failed to complement the hypermutator phenotype of an msh2 deficient strain. However, overexpressing AtMutSγ in MMR proficient strains generated a 4-fold increase in CAN1 forward mutation rate, when compared to wild-type strains. Can(r) mutation spectrum analysis of AtMutSγ overproducing strains revealed a substantial increase in the frequency of base substitution mutations, including an increased accumulation of base pair changes from G:C to A:T and T:A to C:G, G:C or A:T. Taken together, these results suggest that AtMutSγ affects yeast genomic stability by recognizing specific mismatches and preventing correction by yeast MutSα and MutSβ, with subsequent inability to interact with yeast downstream proteins needed to complete MMR.
遗传稳定性部分依赖于 DNA 错配修复(MMR)系统对 DNA 损伤的有效识别和修复。在真核生物中,MMR 是由异二聚体 MutS 同源物(MSH)复合物 MSH2-MSH6 和 MSH2-MSH3 的结合启动的,它们识别和结合错配和未配对的核苷酸。植物编码另一种错配识别蛋白,命名为 MSH7。MSH7 与 MSH2 形成异二聚体,该蛋白复合物被命名为 MutSγ。我们在此报告拟南芥 MSH2 和 MSH7 单独或组合表达对酿酒酵母基因组稳定性的影响。AtMSH2 和 AtMutSγ 蛋白未能弥补 msh2 缺陷菌株的超突变表型。然而,在 MMR 功能正常的菌株中过表达 AtMutSγ 时,与野生型菌株相比,CAN1 正向突变率增加了 4 倍。对 AtMutSγ 过表达菌株的 Can(r)突变谱分析显示,碱基替换突变的频率显著增加,包括 G:C 到 A:T 和 T:A 到 C:G、G:C 或 A:T 的碱基变化积累增加。总之,这些结果表明 AtMutSγ 通过识别特定的错配并阻止酵母 MutSα 和 MutSβ 进行修复,从而影响酵母基因组稳定性,随后无法与完成 MMR 所需的酵母下游蛋白相互作用。