Raich W B, Moran A N, Rothman J H, Hardin J
Program in Cellular and Molecular Biology, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
Mol Biol Cell. 1998 Aug;9(8):2037-49. doi: 10.1091/mbc.9.8.2037.
Members of the MKLP1 subfamily of kinesin motor proteins localize to the equatorial region of the spindle midzone and are capable of bundling antiparallel microtubules in vitro. Despite these intriguing characteristics, it is unclear what role these kinesins play in dividing cells, particularly within the context of a developing embryo. Here, we report the identification of a null allele of zen-4, an MKLP1 homologue in the nematode Caenorhabditis elegans, and demonstrate that ZEN-4 is essential for cytokinesis. Embryos deprived of ZEN-4 form multinucleate single-celled embryos as they continue to cycle through mitosis but fail to complete cell division. Initiation of the cytokinetic furrow occurs at the normal time and place, but furrow propagation halts prematurely. Time-lapse recordings and microtubule staining reveal that the cytokinesis defect is preceded by the dissociation of the midzone microtubules. We show that ZEN-4 protein localizes to the spindle midzone during anaphase and persists at the midbody region throughout cytokinesis. We propose that ZEN-4 directly cross-links the midzone microtubules and suggest that these microtubules are required for the completion of cytokinesis.
驱动蛋白运动蛋白的MKLP1亚家族成员定位于纺锤体中间区的赤道区域,并且能够在体外将反向平行的微管捆绑在一起。尽管具有这些有趣的特征,但尚不清楚这些驱动蛋白在分裂细胞中,特别是在发育中的胚胎环境中发挥什么作用。在这里,我们报告了线虫秀丽隐杆线虫中MKLP1同源物zen - 4的无效等位基因的鉴定,并证明ZEN - 4对胞质分裂至关重要。缺乏ZEN - 4的胚胎在继续经历有丝分裂周期时形成多核单细胞胚胎,但无法完成细胞分裂。胞质分裂沟的起始在正常时间和位置发生,但沟的延伸过早停止。延时记录和微管染色显示,胞质分裂缺陷之前是中间区微管的解离。我们表明,ZEN - 4蛋白在后期定位于纺锤体中间区,并在整个胞质分裂过程中持续存在于中间体区域。我们提出ZEN - 4直接交联中间区微管,并表明这些微管是完成胞质分裂所必需的。