de Morais M A, Vicente E J, Brozmanova J, Schenberg A C, Henriques J A
Departamento de Biofisica e Centro de Biotecnologia, UFRGS, Av. Bento Gonçalves 9500, prédio 2A, B1. 4, Campus do Vale, 91501-970 Porto Alegre, RS, Brasil.
Curr Genet. 1996 Feb;29(3):211-8. doi: 10.1007/BF02221550.
The pso4-1 mutant was characterized as deficient in some types of recombination, including gene conversion, crossing over, and intrachromosomal recombination. The mode of interaction between pso4-1 and rad51 and between pso4-1 and rad52 mutants indicated that the PSO4 gene belongs to the RAD52 epistasis group for strand-break repair. Moreover, the presence of the pso4-1 mutation decreased 8-MOP-photoinduced mutagenesis of the rad51 and rad52 mutants. Complementation tests using heterozygous diploid strains showed that the pso4 protein might interact with the rad52 protein during repair of 8-mop photolesions. The pso4-1 mutant, even though defective in inter- and intra-chromosomal recombination, conserves the ability for plasmid integration of circular and linear plasmid DNA. On the other hand, similar to the rad51 mutant, pso4-1 was able to incise but did not restore high-molecular-weight DNA during the repair of cross links induced by 8-MOP plus UVA. These results, together with those of previous reports, indicate that the PSO4 gene belongs to the RAD52 DNA repair group and its product participates in the DNA rejoining step of the repair of cross-link lesions, which are crucial for induced mutagenesis and recombinogenesis.
pso4-1突变体的特征是在某些类型的重组中存在缺陷,包括基因转换、交叉和染色体内重组。pso4-1与rad51以及pso4-1与rad52突变体之间的相互作用模式表明,PSO4基因属于用于链断裂修复的RAD52上位性组。此外,pso4-1突变的存在降低了rad51和rad52突变体的8-甲氧基补骨脂素光诱导诱变。使用杂合二倍体菌株进行的互补试验表明,在8-甲氧基补骨脂素光损伤的修复过程中,pso4蛋白可能与rad52蛋白相互作用。pso4-1突变体尽管在染色体间和染色体内重组方面存在缺陷,但仍保留了环状和线性质粒DNA的质粒整合能力。另一方面,与rad51突变体相似,pso4-1在8-甲氧基补骨脂素加紫外线A诱导的交联修复过程中能够切割,但不能恢复高分子量DNA。这些结果与先前报道的结果一起表明,PSO4基因属于RAD52 DNA修复组,其产物参与交联损伤修复的DNA重新连接步骤,这对于诱导诱变和重组发生至关重要。