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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The Synaptonemal Complex Shapes the Crossover Landscape Through Cooperative Assembly, Crossover Promotion and Crossover Inhibition During Caenorhabditis elegans Meiosis
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The Synaptonemal Complex Shapes the Crossover Landscape Through Cooperative Assembly, Crossover Promotion and Crossover Inhibition During Caenorhabditis elegans Meiosis

机译:突触复合体在秀丽隐杆线虫减数分裂过程中通过合作装配,交叉促进和交叉抑制来塑造交叉景观。

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摘要

The synaptonemal complex (SC) is a highly ordered proteinaceous structure that assembles at the interface between aligned homologous chromosomes during meiotic prophase. The SC has been demonstrated to function both in stabilization of homolog pairing and in promoting the formation of interhomolog crossovers (COs). How the SC provides these functions and whether it also plays a role in inhibiting CO formation has been a matter of debate. Here we provide new insight into assembly and function of the SC by investigating the consequences of reducing (but not eliminating) [SYP-1][1], a major structural component of the SC central region, during meiosis in Caenorhabditis elegans . First, we find an increased incidence of double CO (DCO) meiotic products following partial depletion of [SYP-1][1] by RNAi, indicating a role for [SYP-1][1] in mechanisms that normally limit crossovers to one per homolog pair per meiosis. Second, [syp-1][2] RNAi worms exhibit both a strong preference for COs to occur on the left half of the X chromosome and a significant bias for [SYP-1][1] protein to be associated with the left half of the chromosome, implying that the SC functions locally in promoting COs. Distribution of [SYP-1][1] on chromosomes in [syp-1][2] RNAi [germ cells][3] provides strong corroboration for cooperative assembly of the SC central region and indicates that [SYP-1][1] preferentially associates with X chromosomes when it is present in limiting quantities. Further, the observed biases in the distribution of both COs and [SYP-1][1] protein support models in which synapsis initiates predominantly in the vicinity of pairing centers (PCs). However, discontinuities in SC structure and clear gaps between localized foci of PC-binding protein [HIM-8][4] and X chromosome-associated [SYP-1][1] stretches allow refinement of models for the role of PCs in promoting synapsis. Our data suggest that the CO landscape is shaped by a combination of three attributes of the SC central region: a CO-promoting activity that functions locally at CO sites, a cooperative assembly process that enables CO formation in regions distant from prominent sites of synapsis initiation, and CO-inhibitory role(s) that limit CO number. [1]: http://www.wormbase.org/db/get?name=SYP-1;class=Gene [2]: http://www.wormbase.org/db/get?name=syp-1;class=Gene [3]: http://www.wormbase.org/db/get?name=germ%20cell;class=Anatomy_name [4]: http://www.wormbase.org/db/get?name=HIM-8;class=Gene
机译:突触复合物(SC)是高度有序的蛋白质结构,在减数分裂前期组装在对齐的同源染色体之间的界面处。已经证明SC在稳定同源物配对和促进同源物交叉(CO)的形成中均起作用。 SC如何提供这些功能以及它是否还可以抑制CO的形成一直是争论的话题。在这里,我们通过研究秀丽隐杆线虫减数分裂期间减少(但不消除)[SYP-1] [1](SC中央区域的主要结构组成部分)的后果,为SC的组装和功能提供了新的见解。首先,我们发现RNAi导致[SYP-1] [1]部分耗尽后,双重CO(DCO)减数分裂产物的发生率增加,表明[SYP-1] [1]在通常将交叉限制为一个的机制中发挥作用每个减数分裂的同系物对。其次,[syp-1] [2] RNAi蠕虫对X染色体左半部的CO表现出强烈的偏爱,而与左半部相关的[SYP-1] [1]蛋白则表现出明显的偏见。的染色体,暗示SC在促进CO中起局部作用。 [SYP-1] [2] RNAi [生殖细胞] [3]中染色体上的[SYP-1] [1]分布为SC中央区域的协同装配提供了强有力的佐证,并表明[SYP-1] [1当X染色体数量有限时,]优先与X染色体缔合。此外,在突触主要在配对中心(PC)附近开始的COs和[SYP-1] [1]蛋白质支持模型中观察到的偏倚。然而,SC结构的不连续性以及PC结合蛋白[HIM-8] [4]和X染色体相关的[SYP-1] [1]延伸片段之间的明显间隙,可以完善PC在促进中的作用模型。突触。我们的数据表明,CO景观是由SC中心区域的三个属性组合而成的:在CO站点上局部起作用的CO促进活动,合作装配过程使CO可以在远离突触起始部位的区域形成。以及限制一氧化碳数量的一氧化碳抑制作用。 [1]:http://www.wormbase.org/db/get?name=SYP-1;class=Gene [2]:http://www.wormbase.org/db/get?name=syp-1 ; class = Gene [3]:http://www.wormbase.org/db/get?name=germ%20cell;class=Anatomy_name [4]:http://www.wormbase.org/db/get?name = HIM-8; class =基因

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