Mladenov Emil, Tsaneva Irina, Anachkova Boyka
Institute of Molecular Biology, Bulgarian Academy of Sciences, Sofia, Bulgaria.
DNA Cell Biol. 2007 Jan;26(1):36-43. doi: 10.1089/dna.2006.0503.
Progression of the cells through the S phase of the cell cycle is connected with accumulation of stalled and collapsed replication forks that are repaired by homologous recombination. To investigate the temporal order of homologous recombination events during the S phase, HeLa cells synchronized at the G1/S phase boundary with mimosine were released to progress into the S phase and the phosphorylation of the histone variant H2AX, the appearance of Rad51 nuclear foci and the subcellular redistribution of Rad51 were followed. The results showed that there was gradual accumulation of double-strand breaks as judged by the increase in the phosphorylation of H2AX during the S phase. Rad51 nuclear foci did not appear until middle S phase, and this was accompanied by an increase in the chromatin- and nuclear matrix-bound Rad51 in the middle to late S phase. To determine the role of the intra S phase checkpoint in the S phase-dependent redistribution of Rad51 the cells were released in the S phase in the presence of the protein kinase inhibitors caffeine and wortmannin. The results suggest that the association of Rad51 with the nuclear matrix is regulated by activation of the intra S phase ATR-dependent checkpoint pathway.
细胞通过细胞周期S期的进程与停滞和崩溃的复制叉积累相关,这些复制叉通过同源重组进行修复。为了研究S期同源重组事件的时间顺序,将用含羞草碱在G1/S期边界同步化的HeLa细胞释放,使其进入S期,并跟踪组蛋白变体H2AX的磷酸化、Rad51核灶的出现以及Rad51的亚细胞重新分布。结果表明,根据S期H2AX磷酸化的增加判断,双链断裂逐渐积累。Rad51核灶直到S期中期才出现,并且在S期中期到后期,与染色质和核基质结合的Rad51增加。为了确定S期内检查点在Rad51的S期依赖性重新分布中的作用,在蛋白激酶抑制剂咖啡因和渥曼青霉素存在的情况下,将细胞在S期释放。结果表明,Rad51与核基质的结合受S期内ATR依赖性检查点途径激活的调节。