Benfato M S, Brendel M, Henriques J A
Departamento de Biofisica, Instituto de Biociencias-UFRGS, Porto Alegre, RS, Brasil.
Curr Genet. 1992 Jan;21(1):85-90. doi: 10.1007/BF00318660.
The mutant allele pso3-1 of Saccharomyces cerevisiae confers sensitivity to treatment with UV365nm (UVA) light-activated mono- and bi-functional psoralens. When pso3-1 is combined in double mutants with selected rad and pso mutant alleles and subjected to 8-MOP + UVA treatment, epistatic interaction with regard to survival is observed with pso1, pso2, and rad3. With the same treatment the combination of pso3-1 with rad6 and rad52 leads to synergistic interaction. For the monofunctional agent 3-carbethoxypsoralen (3-CPs) the analysis of double mutants yields the same results as with the bifunctional 8-methoxypsoralen (8-MOP) with the exception of the pso1-1pso3-1 double mutant. Here we find an additive interaction, i.e., the sensitivities of both parental strains are summed in the double mutant, which indicates a different substrate specificity of the repair activity encoded by the PSO1 and PSO3 genes.
酿酒酵母的突变等位基因pso3-1对用UV365nm(UVA)光激活的单功能和双功能补骨脂素处理敏感。当pso3-1与选定的rad和pso突变等位基因组合形成双突变体并进行8-甲氧基补骨脂素(8-MOP)+UVA处理时,在与pso1、pso2和rad3的存活方面观察到上位性相互作用。用相同的处理方法,pso3-1与rad6和rad52的组合会导致协同相互作用。对于单功能试剂3-羧乙氧基补骨脂素(3-CPs),双突变体的分析产生了与双功能8-甲氧基补骨脂素(8-MOP)相同的结果,但pso1-1pso3-1双突变体除外。在这里我们发现了一种加性相互作用,即两个亲本菌株的敏感性在双突变体中相加,这表明PSO1和PSO3基因编码的修复活性具有不同的底物特异性。