Montelone B A, Gilbertson L A, Nassar R, Giroux C, Malone R E
Department of Biology, University of Iowa, Iowa City 52242.
Mutat Res. 1992 May;267(1):55-66. doi: 10.1016/0027-5107(92)90110-n.
The product of the RAD3 gene of Saccharomyces cerevisiae is required for mitotic cell viability and excision repair of UV-induced pyrimidine dimers. Certain rad3 mutant alleles (originally called rem1) increase the rates of both spontaneous mitotic recombination and mutation. The increase in mutation rates is not dependent upon the presence of the RAD6 error-prone pathway. The mutator phenotype suggests that the wild-type RAD3 gene product may be involved in the maintenance of fidelity of DNA replication in addition to its known role in excision repair. To investigate the role that RAD3 might play in mutation avoidance, we have utilized a well-characterized shuttle vector system to study the mutational spectrum occurring in rad3-102 strains and compare it to that seen in RAD3 strains. The results put constraints on the role that the rad-102 mutant gene product must play if the RAD3 protein is a component of the replication complex. Alternatively, the mutational spectrum is consistent with the hypothesis that the rad3-102 mutant protein interferes with postreplication mismatch repair.
酿酒酵母RAD3基因的产物是有丝分裂细胞存活以及紫外线诱导的嘧啶二聚体切除修复所必需的。某些rad3突变等位基因(最初称为rem1)会增加自发有丝分裂重组和突变的发生率。突变率的增加并不依赖于RAD6易错途径的存在。这种诱变表型表明,野生型RAD3基因产物除了在切除修复中的已知作用外,可能还参与维持DNA复制的保真度。为了研究RAD3在避免突变中可能发挥的作用,我们利用了一个特征明确的穿梭载体系统来研究rad3 - 102菌株中出现的突变谱,并将其与RAD3菌株中的突变谱进行比较。如果RAD3蛋白是复制复合体的一个组成部分,那么这些结果对rad - 102突变基因产物必须发挥的作用提出了限制。或者,突变谱与rad3 - 102突变蛋白干扰复制后错配修复的假说一致。