Tsutsui Yasuhiro, Kurokawa Yumiko, Ito Kentaro, Siddique Md Shahjahan P, Kawano Yumiko, Yamao Fumiaki, Iwasaki Hiroshi
Department of Biological Sciences, School and Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, Meguro-ku, Tokyo, Japan.
Education Academy of Computational Life Science, Tokyo Institute of Technology, Meguro-ku, Tokyo, Japan.
PLoS Genet. 2014 Aug 28;10(8):e1004542. doi: 10.1371/journal.pgen.1004542. eCollection 2014 Aug.
Fbh1, an F-box helicase related to bacterial UvrD, has been proposed to modulate homologous recombination in fission yeast. We provide several lines of evidence for such modulation. Fbh1, but not the related helicases Srs2 and Rqh1, suppressed the formation of crossover recombinants from single HO-induced DNA double-strand breaks. Purified Fbh1 in complex with Skp1 (Fbh1-Skp1 complex) inhibited Rad51-driven DNA strand exchange by disrupting Rad51 nucleoprotein filaments in an ATP-dependent manner; this disruption was alleviated by the Swi5-Sfr1 complex, an auxiliary activator of Rad51. In addition, the reconstituted SCFFbh1 complex, composed of purified Fbh1-Skp1 and Pcu1-Rbx1, displayed ubiquitin-ligase E3 activity toward Rad51. Furthermore, Fbh1 reduced the protein level of Rad51 in stationary phase in an F-box-dependent, but not in a helicase domain-independent manner. These results suggest that Fbh1 negatively regulates Rad51-mediated homologous recombination via its two putative, unrelated activities, namely DNA unwinding/translocation and ubiquitin ligation. In addition to its anti-recombinase activity, we tentatively suggest that Fbh1 might also have a pro-recombination role in vivo, because the Fbh1-Skp1 complex stimulated Rad51-mediated strand exchange in vitro after strand exchange had been initiated.
Fbh1是一种与细菌UvrD相关的F-box解旋酶,有人提出它可调节裂殖酵母中的同源重组。我们提供了几条支持这种调节作用的证据。Fbh1而非相关解旋酶Srs2和Rqh1抑制了由单个HO诱导的DNA双链断裂产生的交叉重组体的形成。纯化的与Skp1结合的Fbh1(Fbh1-Skp1复合物)通过以ATP依赖的方式破坏Rad51核蛋白丝来抑制Rad51驱动的DNA链交换;Rad51的辅助激活剂Swi5-Sfr1复合物可减轻这种破坏。此外,由纯化的Fbh1-Skp1和Pcu1-Rbx1组成的重组SCFFbh1复合物对Rad51表现出泛素连接酶E3活性。此外,Fbh1在静止期以F-box依赖而非解旋酶结构域独立的方式降低了Rad51的蛋白质水平。这些结果表明,Fbh1通过其两个假定的、不相关的活性,即DNA解旋/易位和泛素连接,对Rad51介导的同源重组进行负调控。除了其抗重组酶活性外,我们初步认为Fbh1在体内可能也具有促进重组的作用,因为在链交换开始后,Fbh1-Skp1复合物在体外刺激了Rad51介导的链交换。