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A Two-Pathway Analysis of Meiotic Crossing Over and Gene Conversion in Saccharomyces cerevisiae

机译:酿酒酵母减数分裂穿越和基因转化的两种途径分析

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摘要

Several apparently paradoxical observations regarding meiotic crossing over and gene conversion are readily resolved in a framework that recognizes the existence of two recombination pathways that differ in mismatch repair, structures of intermediates, crossover interference, and the generation of noncrossovers. One manifestation of these differences is that simultaneous gene conversion on both sides of a recombination-initiating DNA double-strand break (“two-sidedness”) characterizes only one of the two pathways and is promoted by mismatch repair. Data from previous work are analyzed quantitatively within this framework, and a molecular model for meiotic double-strand break repair based on the concept of sliding D-loops is offered as an efficient scheme for visualizing the salient results from studies of crossing over and gene conversion, the molecular structures of recombination intermediates, and the biochemical competencies of the proteins involved.
机译:关于减数分裂交换和基因转换的一些显然矛盾的观察结果很容易在一个框架中得到解决,该框架认识到存在两种错配修复,中间体结构,交叉干扰和非交叉产生不同的重组途径。这些差异的一个体现是,重组起始DNA双链断裂(“双面性”)两侧的同时基因转化仅表征了这两种途径中的一种,并通过错配修复得到促进。在此框架内定量分析以前的工作数据,并提供了基于滑动D环概念的减数分裂双链断裂修复分子模型,作为可视化交叉和基因转化研究的重要结果的有效方案。 ,重组中间体的分子结构以及所涉及蛋白质的生化能力。

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