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联会复合体二聚化调控减数分裂中染色体的排列和交叉模式。

Synaptonemal Complex dimerization regulates chromosome alignment and crossover patterning in meiosis.

机构信息

School of Biological Sciences, University of Utah, Salt Lake City, Utah, United States of America.

出版信息

PLoS Genet. 2021 Mar 17;17(3):e1009205. doi: 10.1371/journal.pgen.1009205. eCollection 2021 Mar.

Abstract

During sexual reproduction the parental homologous chromosomes find each other (pair) and align along their lengths by integrating local sequence homology with large-scale contiguity, thereby allowing for precise exchange of genetic information. The Synaptonemal Complex (SC) is a conserved zipper-like structure that assembles between the homologous chromosomes, bringing them together and regulating exchanges between them. However, the molecular mechanisms by which the SC carries out these functions remain poorly understood. Here we isolated and characterized two mutations in the dimerization interface in the middle of the SC zipper in C. elegans. The mutations perturb both chromosome alignment and the regulation of genetic exchanges. Underlying the chromosome-scale phenotypes are distinct alterations to the way SC subunits interact with one another. We propose a model whereby the SC brings homologous chromosomes together through two activities: obligate zipping that prevents assembly on unpaired chromosomes; and a tendency to extend pairing interactions along the entire length of the chromosomes.

摘要

在有性生殖过程中,双亲同源染色体相互寻找(配对),并通过整合局部序列同源性与大规模连续性,沿着它们的长度排列,从而允许精确地交换遗传信息。联会复合体(SC)是一种保守的拉链状结构,在同源染色体之间组装,将它们聚集在一起,并调节它们之间的交换。然而,SC 执行这些功能的分子机制仍知之甚少。在这里,我们在秀丽隐杆线虫的 SC 拉链中间的二聚化界面中分离并鉴定了两个突变。这些突变扰乱了染色体的排列和遗传交换的调节。在染色体尺度表型的基础上,SC 亚基相互作用的方式发生了明显的改变。我们提出了一个模型,即 SC 通过两种活动将同源染色体聚集在一起:强制性的拉链作用,防止在未配对的染色体上组装;以及沿着染色体的整个长度扩展配对相互作用的趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6664/7968687/001c46580727/pgen.1009205.g001.jpg

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