Zhao Weixing, Sung Patrick
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, CT 06520, USA
Nucleic Acids Res. 2015 Apr 30;43(8):4055-66. doi: 10.1093/nar/gkv259. Epub 2015 Mar 27.
The evolutionarily conserved Hop2-Mnd1 complex is a key cofactor for the meiosis-specific recombinase Dmc1. However, emerging evidence has revealed that Hop2-Mnd1 is expressed in somatic tissues, primary human fibroblasts and cell lines, and that it functions in conjunction with the Rad51 recombinase to repair damaged telomeres via the alternate lengthening of telomeres mechanism. Here, we reveal how distinct DNA-binding activities of Hop2-Mnd1 mediate the stabilization of the RAD51-ssDNA presynaptic filament or stimulate the homologous DNA pairing reaction. We have also endeavored to define the interface that governs the assembly of the higher order complex of Hop2-Mnd1 with RAD51. Unexpectedly, we find that ATP enhances the interaction between Hop2-Mnd1 and RAD51, and that both Hop2 and Mnd1 are involved in RAD51 interaction via their C-terminal regions. Importantly, mutations introduced into these Hop2 and Mnd1 domains, including the HOP2 p.del201Glu mutation present in a patient of XX ovarian dysgenesis, diminish the association and functional synergy of Hop2-Mnd1 with both RAD51 and DMC1. Our findings help delineate the intricate manner in which Hop2-Mnd1 engages and functions with RAD51 and DMC1 in mammalian cells and speak to the possible cause of XX ovarian dysgenesis.
进化上保守的Hop2-Mnd1复合物是减数分裂特异性重组酶Dmc1的关键辅助因子。然而,新出现的证据表明,Hop2-Mnd1在体细胞组织、原代人成纤维细胞和细胞系中表达,并且它与Rad51重组酶协同作用,通过端粒替代延长机制修复受损的端粒。在这里,我们揭示了Hop2-Mnd1不同的DNA结合活性如何介导RAD51-ssDNA突触前细丝的稳定或刺激同源DNA配对反应。我们还努力确定了控制Hop2-Mnd1与RAD51高阶复合物组装的界面。出乎意料的是,我们发现ATP增强了Hop2-Mnd1与RAD51之间的相互作用,并且Hop2和Mnd1都通过其C末端区域参与RAD51相互作用。重要的是,引入这些Hop2和Mnd1结构域的突变,包括一名XX型卵巢发育不全患者中存在的HOP2 p.del201Glu突变,会降低Hop2-Mnd1与RAD51和DMC1的结合及功能协同作用。我们的研究结果有助于阐明Hop2-Mnd1在哺乳动物细胞中与RAD51和DMC1结合并发挥功能的复杂方式,并揭示了XX型卵巢发育不全的可能原因。