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Close stable homolog juxtaposition during meiosis in budding yeast is dependent on meiotic recombination occurs independently of synapsis and is distinct from DSB-independent pairing contacts

机译:发芽酵母在减数分裂过程中紧密稳定的同源物并列依赖于减数分裂重组独立于突触发生并且与独立于DSB的配对接触不同

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摘要

A site-specific recombination system that probes the relative probabilities that pairs of chromosomal loci collide with one another in living cells of budding yeast was used to explore the relative contributions of pairing, recombination, synaptonemal complex formation, and telomere clustering to the close juxtaposition of homologous chromosome pairs during meiosis. The level of Cre-mediated recombination between a pair of loxP sites located at an allelic position on homologous chromosomes was 13-fold greater than that between a pair of loxP sites located at ectopic positions on nonhomologous chromosomes. Mutations affecting meiotic recombination initiation and the processing of DNA double-strand breaks (DSBs) into single-end invasions (SEIs) reduced the levels of allelic Cre-mediated recombination levels by three- to sixfold. The severity of Cre/loxP phenotypes is presented in contrast to relatively weak DSB-independent pairing defects as assayed using fluorescence in situ hybridization for these mutants. Mutations affecting synaptonemal complex (SC) formation or crossover control gave wild-type levels of allelic Cre-mediated recombination. A delay in attaining maximum levels of allelic Cre-mediated recombination was observed for a mutant defective in telomere clustering. None of the mutants affected ectopic levels of recombination. These data suggest that stable, close homolog juxtaposition in yeast is distinct from pre-DSB pairing interactions, requires both DSB and SEI formation, but does not depend on crossovers or SC.
机译:一个特定于位点的重组系统,用于探测成对酵母的活细胞中染色体位点对相互碰撞的相对概率,用于研究配对,重组,突触复合体形成和端粒簇聚对紧密并置的相对贡献。减数分裂过程中的同源染色体对。位于同源染色体上等位基因位置的一对loxP位点之间的Cre介导的重组水平比位于非同源染色体上异位位置的一对loxP位点之间的Cre介导的重组水平高13倍。影响减数分裂重组起始和DNA双链断裂(DSBs)加工成单端入侵(SEIs)的突变使等位基因Cre介导的重组水平降低了三到六倍。与荧光较弱的DSB独立配对缺陷相比,Cre / loxP表型的严重性已被提出,这些缺陷使用荧光原位杂交技术对这些突变体进行了分析。影响突触复合体(SC)形成或交叉控制的突变产生野生型水平的等位基因Cre介导的重组。对于端粒簇中有缺陷的突变体,观察到等位基因Cre介导的重组达到最大水平的延迟。没有一个突变体影响异位重组水平。这些数据表明,酵母中稳定,紧密的同源物并置不同于DSB之前的配对相互作用,需要同时形成DSB和SEI,但不依赖于交叉或SC。

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