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Crossing and zipping: molecular duties of the ZMM proteins in meiosis

机译:交叉和拉链:减数分裂中ZMM蛋白的分子义务

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Accurate segregation of homologous chromosomes during meiosis depends on the ability of meiotic cells to promote reciprocal exchanges between parental DNA strands, known as crossovers (COs). For most organisms, including budding yeast and other fungi, mammals, nematodes, and plants, the major CO pathway depends on ZMM proteins, a set of molecular actors specifically devoted to recognize and stabilize CO-specific DNA intermediates that are formed during homologous recombination. The progressive implementation of ZMM-dependent COs takes place within the context of the synaptonemal complex (SC), a proteinaceous structure that polymerizes between homologs and participates in close homolog juxtaposition during prophase I of meiosis. While SC polymerization starts from ZMM-bound sites and ZMM proteins are required for SC polymerization in budding yeast and the fungus Sordaria, other organisms differ in their requirement for ZMM in SC elongation. This review provides an overview of ZMM functions and discusses their collaborative tasks for CO formation and SC assembly, based on recent findings and on a comparison of different model organisms.
机译:在减数分裂期间的同源染色体的精确偏析取决于减数分裂细胞促进父母DNA链之间的互惠交换的能力,称为交叉(COS)。对于大多数生物,包括芽孢芽酵母和其他真菌,哺乳动物,线虫和植物,主要​​的CO途径取决于ZMM蛋白,一组特异性致专用于识别和稳定在同源重组期间形成的共同特异性DNA中间体的分子作用仪。在Synaponemal复合物(SC)的上下文中,ZMM依赖性CO的逐步实施是在同源物中聚合的蛋白质学结构并在PERHASE I中的PROSION I中参与密切的同源物并置。虽然SC聚合从ZMM - 结合的位置开始,但ZMM蛋白是在芽酵母和真菌Sordaria中的SC聚合中所需的,但其他生物在SC伸长中对ZMM的要求不同。本综述概述了ZMM功能,并根据最近的发现以及不同模型生物的比较,讨论了CO形成和SC组装的合作任务。

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