Trouiller Bénédicte, Schaefer Didier G, Charlot Florence, Nogué Fabien
Station de Génétique et d'Amélioration des Plantes, INRA, Route de St Cyr, 78026 Versailles, France.
Nucleic Acids Res. 2006 Jan 5;34(1):232-42. doi: 10.1093/nar/gkj423. Print 2006.
MSH2 is a central component of the mismatch repair pathway that targets mismatches arising during DNA replication, homologous recombination (HR) and in response to genotoxic stresses. Here, we describe the function of MSH2 in the moss Physcomitrella patens, as deciphered by the analysis of loss of function mutants. Ppmsh2 mutants display pleiotropic growth and developmental defects, which reflect genomic instability. Based on loss of function of the APT gene, we estimated this mutator phenotype to be at least 130 times higher in the mutants than in wild type. We also found that MSH2 is involved in some but not all the moss responses to genotoxic stresses we tested. Indeed, the Ppmsh2 mutants were more tolerant to cisplatin and show higher sensitivity to UV-B radiations. PpMSH2 gene involvement in HR was studied by assessing gene targeting (GT) efficiency with homologous and homeologous sequences. GT efficiency with homologous sequences was slightly decreased in the Ppmsh2 mutant compared with wild type. Strikingly GT efficiency with homeologous sequences decreased proportionally to sequence divergence in the wild type whereas it remained unaffected in the mutants. Those results demonstrate the role of PpMSH2 in the maintenance of genome integrity and in homologous and homeologous recombination.
MSH2是错配修复途径的核心组成部分,该途径针对DNA复制、同源重组(HR)过程中以及对基因毒性应激反应时出现的错配。在此,我们描述了小立碗藓中MSH2的功能,这是通过对功能缺失突变体的分析得出的。Ppmsh2突变体表现出多效性生长和发育缺陷,这反映了基因组不稳定性。基于APT基因的功能缺失,我们估计这种突变体表型在突变体中的发生率比野生型至少高130倍。我们还发现,MSH2参与了我们测试的小立碗藓对基因毒性应激的部分而非全部反应。事实上,Ppmsh2突变体对顺铂更耐受,对UV-B辐射更敏感。通过评估同源和异源序列的基因靶向(GT)效率,研究了PpMSH2基因在HR中的作用。与野生型相比,Ppmsh2突变体中同源序列的GT效率略有降低。引人注目的是,野生型中异源序列的GT效率与序列差异成比例下降,而在突变体中则不受影响。这些结果证明了PpMSH2在维持基因组完整性以及同源和异源重组中的作用。