Mell Joshua Chang, Wienholz Bethany L, Salem Asmaa, Burgess Sean M
Department of Molecular and Cellular Biology, University of California, Davis, California 95616 , USA.
Genetics. 2008 Jun;179(2):773-84. doi: 10.1534/genetics.107.077727. Epub 2008 May 27.
Trans-acting factors involved in the early meiotic recombination pathway play a major role in promoting homolog pairing during meiosis in many plants, fungi, and mammals. Here we address whether or not allelic sites have higher levels of interaction when in cis to meiotic recombination events in the budding yeast Saccharomyces cerevisiae. We used Cre/loxP site-specific recombination to genetically measure the magnitude of physical interaction between loxP sites located at allelic positions on homologous chromosomes during meiosis. We observed nonrandom coincidence of Cre-mediated loxP recombination events and meiotic recombination events when the two occurred at linked positions. Further experiments showed that a subset of recombination events destined to become crossover products increased the frequency of nearby Cre-mediated loxP recombination. Our results support a simple physical model of homolog pairing in budding yeast, where recombination at numerous genomic positions generally serves to loosely coalign homologous chromosomes, while crossover-bound recombination intermediates locally stabilize interactions between allelic sites.
参与早期减数分裂重组途径的反式作用因子在许多植物、真菌和哺乳动物减数分裂过程中促进同源染色体配对方面发挥着重要作用。在此,我们探讨在芽殖酵母酿酒酵母中,等位基因位点与减数分裂重组事件顺式排列时是否具有更高水平的相互作用。我们利用Cre/loxP位点特异性重组从遗传学角度测量减数分裂期间位于同源染色体等位位置的loxP位点之间物理相互作用的强度。当Cre介导的loxP重组事件和减数分裂重组事件在连锁位置发生时,我们观察到它们的非随机重合。进一步的实验表明,一部分注定会成为交换产物的重组事件增加了附近Cre介导的loxP重组的频率。我们的结果支持了芽殖酵母中同源染色体配对的一个简单物理模型,即在众多基因组位置的重组通常用于使同源染色体松散地共排列,而与交换相关的重组中间体则在局部稳定等位基因位点之间的相互作用。