Novak J E, Ross-Macdonald P B, Roeder G S
Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, Connecticut 06520-8103, USA.
Genetics. 2001 Jul;158(3):1013-25. doi: 10.1093/genetics/158.3.1013.
The budding yeast MSH4 gene encodes a MutS homolog produced specifically in meiotic cells. Msh4 is not required for meiotic mismatch repair or gene conversion, but it is required for wild-type levels of crossing over. Here, we show that a msh4 null mutation substantially decreases crossover interference. With respect to the defect in interference and the level of crossing over, msh4 is similar to the zip1 mutant, which lacks a structural component of the synaptonemal complex (SC). Furthermore, epistasis tests indicate that msh4 and zip1 affect the same subset of meiotic crossovers. In the msh4 mutant, SC formation is delayed compared to wild type, and full synapsis is achieved in only about half of all nuclei. The simultaneous defects in synapsis and interference observed in msh4 (and also zip1 and ndj1/tam1) suggest a role for the SC in mediating interference. The Msh4 protein localizes to discrete foci on meiotic chromosomes and colocalizes with Zip2, a protein involved in the initiation of chromosome synapsis. Both Zip2 and Zip1 are required for the normal localization of Msh4 to chromosomes, raising the possibility that the zip1 and zip2 defects in crossing over are indirect, resulting from the failure to localize Msh4 properly.
出芽酵母MSH4基因编码一种专门在减数分裂细胞中产生的MutS同源物。减数分裂错配修复或基因转换不需要Msh4,但野生型水平的交叉互换需要它。在这里,我们表明msh4无效突变会大幅降低交叉互换干扰。就干扰缺陷和交叉互换水平而言,msh4与zip1突变体相似,后者缺乏联会复合体(SC)的一种结构成分。此外,上位性测试表明msh4和zip1影响减数分裂交叉互换的同一子集。在msh4突变体中,与野生型相比,SC形成延迟,并且只有约一半的细胞核实现完全联会。在msh4(以及zip1和ndj1/tam1)中观察到的联会和干扰的同时缺陷表明SC在介导干扰中起作用。Msh4蛋白定位于减数分裂染色体上的离散位点,并与参与染色体联会起始的Zip2共定位。Zip2和Zip1都是Msh4正常定位于染色体所必需的,这增加了zip1和zip2在交叉互换中的缺陷是间接的可能性,是由于未能正确定位Msh4所致。