Laborotory of Nuclear Dynamics and Architecture, 2 Laboratory of Developmental and Regenerative Biology, and 3 IMB Microscopy Unit, Institute of Medical Biology, 8A Biomedical Grove, Immunos, Singapore 138648.
J Cell Biol. 2013 Sep 30;202(7):1023-39. doi: 10.1083/jcb.201304004. Epub 2013 Sep 23.
Chromosome pairing is an essential meiotic event that ensures faithful haploidization and recombination of the genome. Pairing of homologous chromosomes is facilitated by telomere-led chromosome movements and formation of a meiotic bouquet, where telomeres cluster to one pole of the nucleus. In metazoans, telomere clustering is dynein and microtubule dependent and requires Sun1, an inner nuclear membrane protein. Here we provide a functional analysis of KASH5, a mammalian dynein-binding protein of the outer nuclear membrane that forms a meiotic complex with Sun1. This protein is related to zebrafish futile cycle (Fue), a nuclear envelope (NE) constituent required for pronuclear migration. Mice deficient in this Fue homologue are infertile. Males display meiotic arrest in which pairing of homologous chromosomes fails. These findings demonstrate that telomere attachment to the NE is insufficient to promote pairing and that telomere attachment sites must be coupled to cytoplasmic dynein and the microtubule system to ensure meiotic progression.
染色体配对是减数分裂过程中的一个重要事件,它确保了基因组的忠实单倍体化和重组。同源染色体的配对是通过端粒引导的染色体运动和减数分裂花束的形成来促进的,在减数分裂花束中,端粒聚集到细胞核的一个极。在后生动物中,端粒聚类依赖于动力蛋白和微管,并且需要 Sun1,这是一种核内膜蛋白。在这里,我们对 KASH5 进行了功能分析,KASH5 是一种哺乳动物的核膜外周动力蛋白结合蛋白,与 Sun1 形成减数分裂复合物。这种蛋白质与斑马鱼无效循环(Fue)有关,Fue 是核膜(NE)的组成部分,是核迁移所必需的。缺乏这种 Fue 同源物的小鼠是不育的。雄性表现出减数分裂阻滞,同源染色体配对失败。这些发现表明,端粒与 NE 的附着不足以促进配对,并且端粒附着位点必须与细胞质动力蛋白和微管系统结合,以确保减数分裂的进行。