Zanders Sarah, Alani Eric
Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York, United States of America.
PLoS Genet. 2009 Jul;5(7):e1000571. doi: 10.1371/journal.pgen.1000571. Epub 2009 Jul 24.
Pch2 is a widely conserved protein that is required in baker's yeast for the organization of meiotic chromosome axes into specific domains. We provide four lines of evidence suggesting that it regulates the formation and distribution of crossover events required to promote chromosome segregation at Meiosis I. First, pch2Delta mutants display wild-type crossover levels on a small (III) chromosome, but increased levels on larger (VII, VIII, XV) chromosomes. Second, pch2Delta mutants show defects in crossover interference. Third, crossovers observed in pch2Delta require both Msh4-Msh5 and Mms4-Mus81 functions. Lastly, the pch2Delta mutation decreases spore viability and disrupts crossover interference in spo11 hypomorph strains that have reduced levels of meiosis-induced double-strand breaks. Based on these and previous observations, we propose a model in which Pch2 functions at an early step in crossover control to ensure that every homolog pair receives an obligate crossover.
Pch2是一种广泛保守的蛋白质,在面包酵母中,它对于将减数分裂染色体轴组织成特定结构域是必需的。我们提供了四条证据表明它调控促进减数第一次分裂时染色体分离所需的交叉事件的形成和分布。第一,pch2Delta突变体在小的(III号)染色体上显示出野生型交叉水平,但在较大的(VII、VIII、XV号)染色体上水平增加。第二,pch2Delta突变体在交叉干涉方面表现出缺陷。第三,在pch2Delta中观察到的交叉需要Msh4-Msh5和Mms4-Mus81的功能。最后,pch2Delta突变降低了孢子活力,并破坏了spo11亚效等位基因菌株中的交叉干涉,这些菌株减数分裂诱导的双链断裂水平降低。基于这些以及之前的观察结果,我们提出了一个模型,其中Pch2在交叉控制的早期步骤发挥作用,以确保每对同源染色体都能发生一次 obligate 交叉。 (注:这里“obligate crossover”不太明确准确中文术语,可根据具体专业知识进一步优化表述)