Ward Jeremy O, Reinholdt Laura G, Motley William W, Niswander Lisa M, Deacon Dekker C, Griffin Laurie B, Langlais Kristofor K, Backus Vickie L, Schimenti Kerry J, O'Brien Marilyn J, Eppig John J, Schimenti John C
Middlebury College, Middlebury, Vermont, United States of America.
PLoS Genet. 2007 Aug;3(8):e139. doi: 10.1371/journal.pgen.0030139. Epub 2007 Jul 6.
Crossing over during meiotic prophase I is required for sexual reproduction in mice and contributes to genome-wide genetic diversity. Here we report on the characterization of an N-ethyl-N-nitrosourea-induced, recessive allele called mei4, which causes sterility in both sexes owing to meiotic defects. In mutant spermatocytes, chromosomes fail to congress properly at the metaphase plate, leading to arrest and apoptosis before the first meiotic division. Mutant oocytes have a similar chromosomal phenotype but in vitro can undergo meiotic divisions and fertilization before arresting. During late meiotic prophase in mei4 mutant males, absence of cyclin dependent kinase 2 and mismatch repair protein association from chromosome cores is correlated with the premature separation of bivalents at diplonema owing to lack of chiasmata. We have identified the causative mutation, a transversion in the 5' splice donor site of exon 1 in the mouse ortholog of Human Enhancer of Invasion 10 (Hei10; also known as Gm288 in mouse and CCNB1IP1 in human), a putative B-type cyclin E3 ubiquitin ligase. Importantly, orthologs of Hei10 are found exclusively in deuterostomes and not in more ancestral protostomes such as yeast, worms, or flies. The cloning and characterization of the mei4 allele of Hei10 demonstrates a novel link between cell cycle regulation and mismatch repair during prophase I.
减数分裂前期I的交叉对于小鼠的有性生殖是必需的,并且有助于全基因组的遗传多样性。在此,我们报告了一种由N-乙基-N-亚硝基脲诱导的隐性等位基因mei4的特征,该等位基因由于减数分裂缺陷导致两性不育。在突变的精母细胞中,染色体在中期板不能正常汇聚,导致在第一次减数分裂前停滞并凋亡。突变的卵母细胞具有类似的染色体表型,但在体外可以在停滞前进行减数分裂和受精。在mei4突变雄性的减数分裂后期前期,由于缺乏交叉,染色体核心中不存在细胞周期蛋白依赖性激酶2和错配修复蛋白的关联,这与双线期二价体的过早分离相关。我们已经鉴定出致病突变,即人类侵袭增强子10(Hei10;在小鼠中也称为Gm288,在人类中称为CCNB1IP1)的小鼠直系同源物外显子1的5'剪接供体位点的颠换,Hei10是一种假定的B型细胞周期蛋白E3泛素连接酶。重要的是,Hei10的直系同源物仅在后口动物中发现,而在更原始的原口动物如酵母、蠕虫或果蝇中未发现。Hei10的mei4等位基因的克隆和表征证明了前期I期间细胞周期调控和错配修复之间的新联系。