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Dynamics of Homology Searching During Gene Conversion in Saccharomyces cerevisiae Revealed by Donor Competition

机译:供体竞争揭示了酿酒酵母基因转化过程中的同源搜索动态。

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摘要

One of the least understood aspects of homologous recombination is the process by which the ends of a double-strand break (DSB) search the entire genome for homologous templates that can be used to repair the break. We took advantage of the natural competition between the alternative donors and employed during endonuclease-induced switching of the budding yeast MAT locus. The strong mating-type-dependent bias in the choice of the donors is enforced by the recombination enhancer (RE), which lies 17 kb proximal to . We investigated factors that improve the use of the disfavored donor. We show that the normal heterochromatic state of the donors does not impair donor usage, as donor choice is not affected by removing this epigenetic silencing. In contrast, increasing the length of homology shared by the disfavored donor increases its use. This result shows that donor choice is not irrevocable and implies that there are several encounters between the DSB ends and even the favored donor before recombination is accomplished. The increase by adding more homology is not linear; these results can be explained by a thermodynamic model that determines the energy cost of using one donor over the other. An important inference from this analysis is that when is favored as the donor, RE causes a reduction in its effective genomic distance from MAT from 200 kb to ∼20 kb, which we hypothesize occurs after the DSB is created, by epigenetic chromatin modifications around MAT.
机译:同源重组的最鲜为人知的方面之一是双链断裂(DSB)末端在整个基因组中搜索可用于修复断裂的同源模板的过程。我们利用了替代供体之间的自然竞争优势,并在核酸内切酶诱导的出芽酵母MAT基因座转换过程中使用了竞争优势。重组增强子(RE)增强了供体选择中依赖交配类型的强烈偏见,重组增强子位于RE的近端17 kb。我们调查了改善不利捐助者使用的因素。我们表明,供体的正常异色状态不会损害供体的使用,因为供体的选择不受去除这种表观遗传沉默的影响。相反,增加不利的供体共有的同源性的长度会增加其使用。该结果表明供体的选择不是不可挽回的,并且意味着在重组完成之前,DSB末端甚至是所偏爱的供体之间都会有几次相遇。增加更多同源性的增加不是线性的;这些结果可以通过热力学模型来解释,该模型确定了使用一个供体相对于另一个供体的能源成本。这项分析的重要推论是,当RE被优先选择为供体时,其有效基因组距离从MAT降低到200 kb到〜20 kb,我们假设这是通过在MAT周围进行表观染色质修饰而在DSB创建后发生的。 。

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