Mao Ninghui, Zhou Qingwen, Kojic Milorad, Pérez-Martín José, Holloman William K
Department of Microbiology and Immunology, Hearst Microbiology Research Center, Cornell University, Weill Medical College, New York, NY 10021, USA.
DNA Repair (Amst). 2007 Nov;6(11):1651-60. doi: 10.1016/j.dnarep.2007.05.012. Epub 2007 Jul 12.
The BRCA2 tumor suppressor functions in repair of DNA by homologous recombination through regulating the action of Rad51. In turn, BRCA2 appears to be regulated by other interacting proteins. Dss1, a small interacting protein that binds to the C-terminal domain, has a profound effect on activity as deduced from studies on the BRCA2-related protein Brh2 in Ustilago maydis. Evidence accumulating in mammalian systems suggests that BCCIP, another small interacting protein that binds to the C-terminal domain of BRCA2, also serves to regulate homologous recombination activity. Here we were interested in testing the role of the putative U. maydis BCCIP ortholog Bcp1 in DNA repair and recombination. In keeping with the mammalian paradigm, Bcp1 bound to the C-terminal region of Brh2. Mutants deleted of the gene were extremely slow growing, showed a delay passing through S phase and exhibited sensitivity to hydroxyurea, but were otherwise normal in DNA repair and homologous recombination. In the absence of Bcp1 cells were unable to maintain the wild type morphology when challenged by a DNA replication stress. These results suggest that Bcp1 could be involved in coordinating morphogenetic events with DNA processing during replication.
BRCA2肿瘤抑制因子通过调节Rad51的作用,在DNA同源重组修复过程中发挥功能。反过来,BRCA2似乎受其他相互作用蛋白的调控。Dss1是一种与C末端结构域结合的小相互作用蛋白,对玉米黑粉菌中与BRCA2相关的蛋白Brh2的研究推断,它对活性有深远影响。哺乳动物系统中积累的证据表明,BCCIP是另一种与BRCA2的C末端结构域结合的小相互作用蛋白,也参与调节同源重组活性。在此,我们感兴趣的是测试玉米黑粉菌中假定的BCCIP直系同源物Bcp1在DNA修复和重组中的作用。与哺乳动物模式一致,Bcp1与Brh2的C末端区域结合。缺失该基因的突变体生长极其缓慢,在S期的进程出现延迟,对羟基脲敏感,但在DNA修复和同源重组方面其他方面正常。在没有Bcp1的情况下,当受到DNA复制应激挑战时,细胞无法维持野生型形态。这些结果表明,Bcp1可能参与在复制过程中协调形态发生事件与DNA加工。