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联会复合体具有液晶特性,并在空间上调节减数分裂重组因子。

The synaptonemal complex has liquid crystalline properties and spatially regulates meiotic recombination factors.

作者信息

Rog Ofer, Köhler Simone, Dernburg Abby F

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, Berkeley, United States.

Howard Hughes Medical Institute, Chevy Chase, United States.

出版信息

Elife. 2017 Jan 3;6:e21455. doi: 10.7554/eLife.21455.

Abstract

The synaptonemal complex (SC) is a polymer that spans ~100 nm between paired homologous chromosomes during meiosis. Its striated, periodic appearance in electron micrographs led to the idea that transverse filaments within this structure 'crosslink' the axes of homologous chromosomes, stabilizing their pairing. SC proteins can also form polycomplexes, three-dimensional lattices that recapitulate the periodic structure of SCs but do not associate with chromosomes. Here we provide evidence that SCs and polycomplexes contain mobile subunits and that their assembly is promoted by weak hydrophobic interactions, indicative of a liquid crystalline phase. We further show that in the absence of recombination intermediates, polycomplexes recapitulate the dynamic localization of pro-crossover factors during meiotic progression, revealing how the SC might act as a conduit to regulate chromosome-wide crossover distribution. Properties unique to liquid crystals likely enable long-range signal transduction along meiotic chromosomes and underlie the rapid evolution of SC proteins.

摘要

联会复合体(SC)是一种聚合物,在减数分裂期间跨越配对的同源染色体之间约100纳米的距离。它在电子显微镜图像中呈现出条纹状的周期性外观,这导致了这样一种观点,即该结构中的横向细丝“交联”同源染色体的轴,稳定它们的配对。SC蛋白还可以形成多复合体,即三维晶格,其重现了SC的周期性结构,但不与染色体相关联。在这里,我们提供证据表明,SCs和多复合体包含可移动的亚基,并且它们的组装由弱疏水相互作用促进,这表明存在液晶相。我们进一步表明,在没有重组中间体的情况下,多复合体在减数分裂进程中重现了前交叉因子的动态定位,揭示了SC可能如何作为调节全染色体交叉分布的管道。液晶特有的特性可能使沿减数分裂染色体进行长距离信号转导成为可能,并构成了SC蛋白快速进化的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c70c/5268736/10ae7381b69c/elife-21455-fig1.jpg

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