Schiestl R H, Prakash S
Department of Biology, University of Rochester, New York 14627.
Mol Cell Biol. 1990 Jun;10(6):2485-91. doi: 10.1128/mcb.10.6.2485-2491.1990.
The RAD10 gene of Saccharomyces cerevisiae is required for the incision step of excision repair of UV-damaged DNA. We show that the RAD10 gene is also required for mitotic recombination. The rad10 delta mutation lowered the rate of intrachromosomal recombination of a his3 duplication in which one his3 allele has a deletion at the 3' end and the other his3 allele has a deletion at the 5' end (his3 delta 3' his3 delta 5'). The rate of formation of HIS3+ recombinants in the rad10 delta mutant was not affected by the rad1 delta mutation but decreased synergistically in the presence of the rad10 delta mutation in combination with the rad52 delta mutation. These observations indicate that the RAD1 and RAD10 genes function together in a mitotic recombination pathway that is distinct from the RAD52 recombination pathway. The rad10 delta mutation also lowered the efficiency of integration of linear DNA molecules and circular plasmids into homologous genomic sequences. We suggest that the RAD1 and RAD10 gene products act in recombination after the formation of the recombinogenic substrate. The rad1 delta and rad10 delta mutations did not affect meiotic intrachromosomal recombination of the his3 delta 3' his3 delta 5' duplication or mitotic and meiotic recombination of ade2 heteroalleles located on homologous chromosomes.
酿酒酵母的RAD10基因是紫外线损伤DNA切除修复切口步骤所必需的。我们发现RAD10基因在有丝分裂重组中也是必需的。rad10Δ突变降低了his3重复序列的染色体内重组率,其中一个his3等位基因在3'端有缺失,另一个his3等位基因在5'端有缺失(his3Δ3' his3Δ5')。rad10Δ突变体中HIS3+重组体的形成速率不受rad1Δ突变的影响,但在rad10Δ突变与rad52Δ突变同时存在时协同降低。这些观察结果表明,RAD1和RAD10基因在一条与RAD52重组途径不同的有丝分裂重组途径中共同发挥作用。rad10Δ突变也降低了线性DNA分子和环状质粒整合到同源基因组序列中的效率。我们认为RAD1和RAD10基因产物在重组底物形成后参与重组过程。rad1Δ和rad10Δ突变不影响his3Δ3' his3Δ5'重复序列的减数分裂染色体内重组,也不影响位于同源染色体上的ade2异等位基因的有丝分裂和减数分裂重组。