Hong Ye, Sonneville Remi, Agostinho Ana, Meier Bettina, Wang Bin, Blow J Julian, Gartner Anton
Centre for Gene Regulation and Expression, University of Dundee, Dundee, United Kingdom.
PLoS Genet. 2016 Mar 24;12(3):e1005872. doi: 10.1371/journal.pgen.1005872. eCollection 2016 Mar.
Meiotic recombination is essential for the repair of programmed double strand breaks (DSBs) to generate crossovers (COs) during meiosis. The efficient processing of meiotic recombination intermediates not only needs various resolvases but also requires proper meiotic chromosome structure. The Smc5/6 complex belongs to the structural maintenance of chromosome (SMC) family and is closely related to cohesin and condensin. Although the Smc5/6 complex has been implicated in the processing of recombination intermediates during meiosis, it is not known how Smc5/6 controls meiotic DSB repair. Here, using Caenorhabditis elegans we show that the SMC-5/6 complex acts synergistically with HIM-6, an ortholog of the human Bloom syndrome helicase (BLM) during meiotic recombination. The concerted action of the SMC-5/6 complex and HIM-6 is important for processing recombination intermediates, CO regulation and bivalent maturation. Careful examination of meiotic chromosomal morphology reveals an accumulation of inter-chromosomal bridges in smc-5; him-6 double mutants, leading to compromised chromosome segregation during meiotic cell divisions. Interestingly, we found that the lethality of smc-5; him-6 can be rescued by loss of the conserved BRCA1 ortholog BRC-1. Furthermore, the combined deletion of smc-5 and him-6 leads to an irregular distribution of condensin and to chromosome decondensation defects reminiscent of condensin depletion. Lethality conferred by condensin depletion can also be rescued by BRC-1 depletion. Our results suggest that SMC-5/6 and HIM-6 can synergistically regulate recombination intermediate metabolism and suppress ectopic recombination by controlling chromosome architecture during meiosis.
减数分裂重组对于修复程序性双链断裂(DSB)以在减数分裂期间产生交叉(CO)至关重要。减数分裂重组中间体的有效处理不仅需要各种解离酶,还需要适当的减数分裂染色体结构。Smc5/6复合物属于染色体结构维持(SMC)家族,与黏连蛋白和凝聚素密切相关。尽管Smc5/6复合物已被证明参与减数分裂期间重组中间体的处理,但尚不清楚Smc5/6如何控制减数分裂DSB修复。在这里,我们利用秀丽隐杆线虫表明,SMC-5/6复合物在减数分裂重组过程中与人布卢姆综合征解旋酶(BLM)的直系同源物HIM-6协同作用。SMC-5/6复合物和HIM-6的协同作用对于处理重组中间体、CO调节和二价体成熟很重要。仔细检查减数分裂染色体形态发现,smc-5;him-6双突变体中染色体间桥积累,导致减数分裂细胞分裂期间染色体分离受损。有趣的是,我们发现smc-5;him-6的致死性可以通过保守的BRCA1直系同源物BRC-1的缺失来挽救。此外,smc-5和him-6的联合缺失导致凝聚素分布不规则,并导致类似于凝聚素耗竭的染色体解聚缺陷。凝聚素耗竭导致的致死性也可以通过BRC-1耗竭来挽救。我们的结果表明,SMC-5/6和HIM-6可以协同调节重组中间体代谢,并通过在减数分裂期间控制染色体结构来抑制异位重组。