Wu Guikai, Zhou Longen, Khidr Lily, Guo Xuning Emily, Kim Wankee, Lee Young Mi, Krasieva Tatiana, Chen Phang-Lang
Department of Biological Chemistry, School of Medicine, University of California, Irvine, California 92697, USA.
Cell Cycle. 2008 Jul 1;7(13):2013-20. doi: 10.4161/cc.7.13.6130. Epub 2008 Apr 16.
Chromokinesins are microtubule-motor molecules that possess chromatin binding activity and are important for mitotic and meiotic regulation. The chromokinesin-member Kif4A is unique in that it localizes to nucleus during interphase of the cell cycle. Kif4 deletion by gene targeting in mouse embryonic cells was known to associate with DNA damage response. However, its precise role in DNA damage or repair pathway is not clear. Here we report that Kif4A associates with BRCA2 in a biochemical identification and that the interaction is mediated by the Kif4A C-terminal cargo-binding domain and BRCA2 C-terminal conserved region. Upon nucleus-specific laser micro-irradiation, Kif4A was rapidly recruited to sites of DNA damage. Significantly, the depletion of Kif4A from cells by shRNA impaired the ionizing-radiation induced foci (IRIF) formation of Rad51, both quantitatively and qualitatively. In contrast, the IRIF of gamma-H2AX or NBS1 was largely intact. Moreover, Kif4A knockdown rendered cells hypersensitive to ionizing radiation in a colonogenic survival assay. We further demonstrated that Kif4A deficiency led to significantly decreased homologous recombination in an I-SceI endonuclease induced in vivo recombination assay. Together, our results suggest a novel role for a chromokinesin family member in the DNA damage response by modulating the BRCA2/Rad51 pathway.
染色体驱动蛋白是一类具有微管运动活性且对有丝分裂和减数分裂调控很重要的微管运动分子。染色体驱动蛋白家族成员Kif4A的独特之处在于,它在细胞周期的间期定位于细胞核。已知通过基因靶向在小鼠胚胎细胞中缺失Kif4会与DNA损伤反应相关。然而,其在DNA损伤或修复途径中的精确作用尚不清楚。在此我们报告,在生化鉴定中Kif4A与BRCA2相互作用,且这种相互作用由Kif4A的C末端货物结合结构域和BRCA2的C末端保守区域介导。在细胞核特异性激光微照射后,Kif4A迅速被招募到DNA损伤位点。重要的是,通过短发夹RNA(shRNA)从细胞中耗尽Kif4A,在数量和质量上均损害了电离辐射诱导的Rad51焦点(IRIF)形成。相比之下,γ-H2AX或NBS1的IRIF基本完整。此外,在集落形成存活试验中,Kif4A敲低使细胞对电离辐射高度敏感。我们进一步证明,在I-SceI内切核酸酶诱导的体内重组试验中,Kif4A缺陷导致同源重组显著减少。总之,我们的结果表明染色体驱动蛋白家族成员通过调节BRCA2/Rad51途径在DNA损伤反应中具有新作用。