Smolikov Sarit, Schild-Prüfert Kristina, Colaiácovo Mónica P
Department of Genetics, Harvard Medical School, Boston, Massachusetts, United States of America.
PLoS Genet. 2008 Jun 6;4(6):e1000088. doi: 10.1371/journal.pgen.1000088.
The synaptonemal complex (SC), a tripartite proteinaceous structure that forms between homologous chromosomes during meiosis, is crucial for faithful chromosome segregation. Here we identify CRA-1, a novel and conserved protein that is required for the assembly of the central region of the SC during C. elegans meiosis. In the absence of CRA-1, central region components fail to extensively localize onto chromosomes at early prophase and instead mostly surround the chromatin at this stage. Later in prophase, central region proteins polymerize along chromosome axes, but for the most part fail to connect the axes of paired homologous chromosomes. This defect results in an inability to stabilize homologous pairing interactions, altered double-strand break (DSB) repair progression, and a lack of chiasmata. Surprisingly, DSB formation and repair are required to promote the polymerization of the central region components along meiotic chromosome axes in cra-1 mutants. In the absence of both CRA-1 and any one of the C. elegans homologs of SPO11, MRE11, RAD51, or MSH5, the polymerization observed along chromosome axes is perturbed, resulting in the formation of aggregates of the SC central region proteins. While radiation-induced DSBs rescue this polymerization in cra-1; spo-11 mutants, they fail to do so in cra-1; mre-11, cra-1; rad-51, and cra-1; msh-5 mutants. Taken together, our studies place CRA-1 as a key component in promoting the assembly of a tripartite SC structure. Moreover, they reveal a scenario in which DSB formation and repair can drive the polymerization of SC components along chromosome axes in C. elegans.
联会复合体(SC)是一种在减数分裂期间于同源染色体之间形成的三方蛋白质结构,对染色体的准确分离至关重要。在此,我们鉴定出CRA-1,这是一种新型的保守蛋白,在秀丽隐杆线虫减数分裂期间SC中央区域的组装中是必需的。在缺乏CRA-1的情况下,中央区域成分在前期早期无法广泛定位到染色体上,而是在这个阶段大多围绕着染色质。在前期后期,中央区域蛋白沿着染色体轴聚合,但在很大程度上未能连接配对同源染色体的轴。这种缺陷导致无法稳定同源配对相互作用,改变双链断裂(DSB)修复进程,并且缺乏交叉。令人惊讶的是,在cra-1突变体中,DSB的形成和修复是促进中央区域成分沿着减数分裂染色体轴聚合所必需的。在缺乏CRA-1以及秀丽隐杆线虫SPO11、MRE11、RAD51或MSH5的任何一个同源物的情况下,沿着染色体轴观察到的聚合受到干扰,导致SC中央区域蛋白聚集体的形成。虽然辐射诱导的DSB在cra-1; spo-11突变体中挽救了这种聚合,但在cra-1; mre-11、cra-1; rad-51和cra-1; msh-5突变体中却未能如此。综上所述,我们的研究将CRA-1定位为促进三方SC结构组装的关键成分。此外,它们揭示了一种情况,即DSB的形成和修复可以驱动秀丽隐杆线虫中SC成分沿着染色体轴的聚合。