Ohuchi Takashi, Seki Masayuki, Branzei Dana, Maeda Daisuke, Ui Ayako, Ogiwara Hideaki, Tada Shusuke, Enomoto Takemi
Molecular Cell Biology Laboratory, Graduate School of Pharmaceutical Sciences, Tohoku University, Aoba 6-3, Aramaki, Aoba-ku, Sendai 980-8578, Japan.
DNA Repair (Amst). 2008 Jun 1;7(6):879-89. doi: 10.1016/j.dnarep.2008.02.005. Epub 2008 Apr 8.
The protein Rad52 is a key player in various types of homologous recombination and is essential to maintenance of genomic integrity. Although evidence indicates that Rad52 is modified by SUMO, the physiological relevance of this sumoylation remains unclear. Here, we identify the conditions under which Rad52 sumoylation is induced, and clarify the role of this modification in homologous recombination. Oligomerization of Rad52 was a prerequisite for sumoylation, and the modification occurred in the cell proceeding S phase being exposed to the DNA-damaging agent methyl methanesulfonate (MMS). Following exposure to MMS, sumoylated Rad52 accumulated in rad51 cells, but not in the recombination-related gene mutants, rad54, rad55, rad59, sgs1, or srs2. The accumulation of sumoylated Rad52 was suppressed in rad51 cells expressing Rad51-K191R, an ATPase-defective protein presumed to be recruited to ssDNA. Although the sumoylation defective mutant rad52-3KR (K10R/K11R/K220R) showed no defect in mating-type switching, which did not lead to Rad52 sumoylation in wild-type cells, the mutant did demonstrate a partial defect in MMS-induced interchromosomal homologous recombination.
蛋白质Rad52是各类同源重组中的关键因子,对维持基因组完整性至关重要。尽管有证据表明Rad52会被小泛素样修饰物(SUMO)修饰,但其这种SUMO化修饰的生理相关性仍不清楚。在此,我们确定了诱导Rad52 SUMO化修饰的条件,并阐明了这种修饰在同源重组中的作用。Rad52的寡聚化是SUMO化修饰的前提条件,且这种修饰发生在细胞进入S期并暴露于DNA损伤剂甲磺酸甲酯(MMS)时。暴露于MMS后,SUMO化修饰的Rad52在rad51细胞中积累,但在与重组相关的基因突变体rad54、rad55、rad59、sgs1或srs2中不积累。在表达Rad51-K191R(一种推测会被招募到单链DNA上的ATP酶缺陷蛋白)的rad51细胞中,SUMO化修饰的Rad52的积累受到抑制。尽管SUMO化修饰缺陷突变体rad52-3KR(K10R/K11R/K220R)在交配型转换方面没有缺陷(在野生型细胞中交配型转换不会导致Rad52 SUMO化修饰),但该突变体在MMS诱导的染色体间同源重组中确实表现出部分缺陷。