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A meiotic XPF–ERCC1-like complex recognizes joint molecule recombination intermediates to promote crossover formation

机译:减数分裂XPF–ERCC1样复合物识别接头分子重组中间体以促进交叉形成

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摘要

Meiotic crossover formation requires the stabilization of early recombination intermediates by a set of proteins and occurs within the environment of the chromosome axis, a structure important for the regulation of meiotic recombination events. The molecular mechanisms underlying and connecting crossover recombination and axis localization are elusive. Here, we identified the ZZS (Zip2–Zip4–Spo16) complex, required for crossover formation, which carries two distinct activities: one provided by Zip4, which acts as hub through physical interactions with components of the chromosome axis and the crossover machinery, and the other carried by Zip2 and Spo16, which preferentially bind branched DNA molecules in vitro. We found that Zip2 and Spo16 share structural similarities to the structure-specific XPF–ERCC1 nuclease, although it lacks endonuclease activity. The XPF domain of Zip2 is required for crossover formation, suggesting that, together with Spo16, it has a noncatalytic DNA recognition function. Our results suggest that the ZZS complex shepherds recombination intermediates toward crossovers as a dynamic structural module that connects recombination events to the chromosome axis. The identification of the ZZS complex improves our understanding of the various activities required for crossover implementation and is likely applicable to other organisms, including mammals.
机译:减数分裂交换的形成需要通过一组蛋白质稳定早期重组中间体,并且发生在染色体轴的环境中,该结构对调控减数分裂重组事件很重要。交叉重组和轴定位的基础和联系的分子机制尚不清楚。在这里,我们确定了交叉形成所需的ZZS(Zip2–Zip4–Spo16)复合物,它具有两种不同的活性:Zip4提供的一种,通过与染色体轴和交叉机制的物理相互作用而充当枢纽,另一个由Zip2和Spo16携带,它们优先结合体外的分支DNA分子。我们发现Zip2和Spo16与特定于结构的XPF–ERCC1核酸酶具有结构相似性,尽管它缺乏核酸内切酶活性。 Zip2的XPF域是交叉形成所必需的,这表明它与Spo16一起具有非催化DNA识别功能。我们的结果表明,ZZS复杂的牧羊人将重组中间体作为一种将重组事件连接到染色体轴上的动态结构模块,向交叉转移。鉴定ZZS复合体可提高我们对交叉实施所需的各种活动的了解,并可能适用于其他生物,包括哺乳动物。

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