Herbert Mary, Levasseur Mark, Homer Hayden, Yallop Katie, Murdoch Alison, McDougall Alex
Cell and Developmental Physiology Research Group, School of Surgical and Reproductive Sciences, Bioscience Centre, International Centre for Life, Times Square, Newcastle upon Tyne, NE1 4EP, UK.
Nat Cell Biol. 2003 Nov;5(11):1023-5. doi: 10.1038/ncb1062.
Disjunction of pairs of homologous chromosomes during the first meiotic division (MI) requires anaphase-promoting complex (APC)-mediated activation of separase in budding yeast and Caenorhabditis elegans, but not Xenopus laevis. It is not clear which model best fits the mammalian system. Here we show that homologue disjunction in mouse oocytes is dependent on proteolysis of the separase inhibitor securin and the Cdk1 regulatory sub-unit cyclin B1. Proteolysis of both proteins was entirely dependent on their conserved destruction box (D-box) motifs, through which they are targeted to the APC. These data indicate that the mechanisms regulating homologue disjunction in mammalian oocytes are similar to those of budding yeast and C.elegans.
在第一次减数分裂(MI)期间,同源染色体对的分离在芽殖酵母和秀丽隐杆线虫中需要后期促进复合物(APC)介导的分离酶激活,但在非洲爪蟾中则不需要。目前尚不清楚哪种模型最适合哺乳动物系统。在这里,我们表明小鼠卵母细胞中的同源染色体分离依赖于分离酶抑制剂securin和Cdk1调节亚基细胞周期蛋白B1的蛋白水解。这两种蛋白质的蛋白水解完全依赖于它们保守的破坏框(D-box)基序,通过这些基序它们被靶向到APC。这些数据表明,调节哺乳动物卵母细胞中同源染色体分离的机制与芽殖酵母和秀丽隐杆线虫的机制相似。