Lorenz Alexander, Mehats Alizée, Osman Fekret, Whitby Matthew C
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK The Institute of Medical Sciences (IMS), University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, UK
Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, UK.
Nucleic Acids Res. 2014 Dec 16;42(22):13723-35. doi: 10.1093/nar/gku1219. Epub 2014 Nov 20.
During meiosis programmed DNA double-strand breaks (DSBs) are repaired by homologous recombination using the sister chromatid or the homologous chromosome (homolog) as a template. This repair results in crossover (CO) and non-crossover (NCO) recombinants. Only CO formation between homologs provides the physical linkages guiding correct chromosome segregation, which are essential to produce healthy gametes. The factors that determine the CO/NCO decision are still poorly understood. Using Schizosaccharomyces pombe as a model we show that the Rad51/Dmc1-paralog complexes Rad55-Rad57 and Rdl1-Rlp1-Sws1 together with Swi5-Sfr1 play a major role in antagonizing both the FANCM-family DNA helicase/translocase Fml1 and the RecQ-type DNA helicase Rqh1 to limit hybrid DNA formation and promote Mus81-Eme1-dependent COs. A common attribute of these protein complexes is an ability to stabilize the Rad51/Dmc1 nucleoprotein filament, and we propose that it is this property that imposes constraints on which enzymes gain access to the recombination intermediate, thereby controlling the manner in which it is processed and resolved.
在减数分裂过程中,程序性DNA双链断裂(DSB)通过同源重组进行修复,以姐妹染色单体或同源染色体(同源物)为模板。这种修复产生交叉(CO)和非交叉(NCO)重组体。只有同源物之间形成CO才能提供指导正确染色体分离的物理连接,这对于产生健康的配子至关重要。决定CO/NCO选择的因素仍知之甚少。我们以粟酒裂殖酵母为模型表明,Rad51/Dmc1旁系同源复合物Rad55-Rad57和Rdl1-Rlp1-Sws1与Swi5-Sfr1一起,在拮抗FANCM家族DNA解旋酶/转位酶Fml1和RecQ型DNA解旋酶Rqh1以限制杂种DNA形成并促进Mus81-Eme1依赖性CO方面发挥主要作用。这些蛋白质复合物的一个共同特性是能够稳定Rad51/Dmc1核蛋白丝,我们认为正是这种特性对哪些酶能够接触到重组中间体施加了限制,从而控制了其加工和解决的方式。