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Crossover assurance and crossover interference are distinctly regulated by the ZMM proteins during yeast meiosis.

机译:酵母减数分裂过程中,ZMM蛋白明显地调节了交叉保证和交叉干扰。

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Meiotic crossing-over is highly regulated such that each homolog pair typically receives at least one crossover (assurance) and adjacent crossovers are widely spaced (interference). Here we provide evidence that interference and assurance are mechanistically distinct processes that are separated by mutations in a new ZMM (Zip, Msh, Mer) protein from Saccharomyces cerevisiae, Spo16. Like other zmm mutants, spo16 cells have defects in both crossing-over and synaptonemal complex formation. Unlike in previously characterized zmm mutants, the residual crossovers in spo16 cells show interference comparable to that in the wild type. Spo16 interacts with a second ZMM protein, Spo22 (also known as Zip4), and spo22 mutants also show normal interference. Notably, assembly of the MutS homologs Msh4 and Msh5 on chromosomes occurs in both spo16 and spo22, but not in other zmm mutants. We suggest that crossover interference requires the normal assembly of recombination complexes containing Msh4 and Msh5 but does not require Spo16- and Spo22-dependent extension of synaptonemal complexes. In contrast, crossover assurance requires all ZMM proteins and full-length synaptonemal complexes.
机译:减数分裂的交换受到高度调节,使得每个同系物对通常接受至少一个交换(保证),而相邻的交换之间的距离很宽(干扰)。在这里,我们提供的证据表明,干扰和保证是机制上不同的过程,这些过程由酿酒酵母Spo16中的新ZMM(Zip,Msh,Mer)蛋白中的突变分隔开。像其他zmm突变体一样,spo16细胞在交叉和突触复合体形成方面均存在缺陷。与以前表征的zmm突变体不同,spo16细胞中的残留交叉交换显示出与野生型相当的干扰。 Spo16与第二个ZMM蛋白Spo22(也称为Zip4)相互作用,并且spo22突变体也显示出正常的干扰。值得注意的是,MutS同源基因Msh4和Msh5在染色体上的组装在spo16和spo22中均发生,但在其他zmm突变体中均不发生。我们建议交叉干扰需要包含Msh4和Msh5的重组复合体的正常组装,但不需要突触复合体的Spo16和Spo22依赖性延伸。相反,交叉保证需要所有ZMM蛋白和全长突触复合物。

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