Yoon Dennis, Wang Yuzhen, Stapleford Kenneth, Wiesmüller Lisa, Chen Junghuei
Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716, USA.
J Mol Biol. 2004 Feb 20;336(3):639-54. doi: 10.1016/j.jmb.2003.12.050.
We explore the effects of p53 on strand exchange as well as regression of stalled replication forks promoted by human Rad51. We have found that p53 specifically inhibits strand exchange mediated by human Rad51, but not by Escherichia coli RecA. In addition, we provide in vitro evidence that human Rad51 can promote regression of a stalled replication fork, and p53 also inhibits this fork regression. Furthermore, we show that two cancer-related p53 mutant proteins cannot inhibit strand exchange and fork regression catalyzed by human Rad51. The results establish a direct functional link between p53 and human Rad51, and reveal that one of p53's functions in genome stabilization may be to prevent detrimental genome rearrangements promoted by human Rad51. Thus, the results support the hypothesis that p53 contributes to genome stability by a transcription-independent modulation of homologous recombination.
我们探究了p53对链交换以及由人类Rad51促进的停滞复制叉的回归的影响。我们发现,p53特异性抑制由人类Rad51介导的链交换,但不抑制大肠杆菌RecA介导的链交换。此外,我们提供了体外证据表明人类Rad51可以促进停滞复制叉的回归,并且p53也抑制这种复制叉的回归。此外,我们表明两种与癌症相关的p53突变蛋白不能抑制由人类Rad51催化的链交换和复制叉回归。这些结果建立了p53与人类Rad51之间直接的功能联系,并揭示了p53在基因组稳定中的功能之一可能是防止由人类Rad51促进的有害基因组重排。因此,这些结果支持了p53通过对同源重组的转录非依赖性调节来促进基因组稳定性的假说。