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Ecm11-Gmc2 复合物通过在芽殖酵母中组装横丝促进联会复合体的形成。

The Ecm11-Gmc2 complex promotes synaptonemal complex formation through assembly of transverse filaments in budding yeast.

机构信息

MRC Genome Damage and Stability Centre, University of Sussex, Brighton, United Kingdom.

出版信息

PLoS Genet. 2013;9(1):e1003194. doi: 10.1371/journal.pgen.1003194. Epub 2013 Jan 10.

Abstract

During meiosis, homologous chromosomes pair at close proximity to form the synaptonemal complex (SC). This association is mediated by transverse filament proteins that hold the axes of homologous chromosomes together along their entire length. Transverse filament proteins are highly aggregative and can form an aberrant aggregate called the polycomplex that is unassociated with chromosomes. Here, we show that the Ecm11-Gmc2 complex is a novel SC component, functioning to facilitate assembly of the yeast transverse filament protein, Zip1. Ecm11 and Gmc2 initially localize to the synapsis initiation sites, then throughout the synapsed regions of paired homologous chromosomes. The absence of either Ecm11 or Gmc2 substantially compromises the chromosomal assembly of Zip1 as well as polycomplex formation, indicating that the complex is required for extensive Zip1 polymerization. We also show that Ecm11 is SUMOylated in a Gmc2-dependent manner. Remarkably, in the unSUMOylatable ecm11 mutant, assembly of chromosomal Zip1 remained compromised while polycomplex formation became frequent. We propose that the Ecm11-Gmc2 complex facilitates the assembly of Zip1 and that SUMOylation of Ecm11 is critical for ensuring chromosomal assembly of Zip1, thus suppressing polycomplex formation.

摘要

在减数分裂过程中,同源染色体近距离配对形成联会复合体(SC)。这种联会是由横向细丝蛋白介导的,这些蛋白沿着同源染色体的整个长度将染色体的轴保持在一起。横向细丝蛋白高度聚集,可以形成一种与染色体无关的异常聚集体,称为多聚复合物。在这里,我们表明 Ecm11-Gmc2 复合物是一种新的 SC 成分,其功能是促进酵母横向细丝蛋白 Zip1 的组装。Ecm11 和 Gmc2 最初定位于联会起始位点,然后定位于配对同源染色体的联会区域。无论是 Ecm11 还是 Gmc2 的缺失都会严重影响 Zip1 的染色体组装以及多聚复合物的形成,表明该复合物对于广泛的 Zip1 聚合是必需的。我们还表明,Ecm11 以 Gmc2 依赖性方式发生 SUMO 化。值得注意的是,在不可 SUMO 化的 ecm11 突变体中,染色体 Zip1 的组装仍然受到影响,而多聚复合物的形成变得频繁。我们提出,Ecm11-Gmc2 复合物促进了 Zip1 的组装,并且 Ecm11 的 SUMO 化对于确保 Zip1 的染色体组装至关重要,从而抑制了多聚复合物的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a09c/3542071/76903620aff1/pgen.1003194.g001.jpg

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