Lee L, Klee S K, Evangelista M, Boone C, Pellman D
Department of Pediatric Oncology, The Dana-Farber Cancer Institute and Department of Pediatric Hematology, The Children's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.
J Cell Biol. 1999 Mar 8;144(5):947-61. doi: 10.1083/jcb.144.5.947.
Alignment of the mitotic spindle with the axis of cell division is an essential process in Saccharomyces cerevisiae that is mediated by interactions between cytoplasmic microtubules and the cell cortex. We found that a cortical protein, the yeast formin Bni1p, was required for spindle orientation. Two striking abnormalities were observed in bni1Delta cells. First, the initial movement of the spindle pole body (SPB) toward the emerging bud was defective. This phenotype is similar to that previously observed in cells lacking the kinesin Kip3p and, in fact, BNI1 and KIP3 were found to be in the same genetic pathway. Second, abnormal pulling interactions between microtubules and the cortex appeared to cause preanaphase spindles in bni1Delta cells to transit back and forth between the mother and the bud. We therefore propose that Bni1p may localize or alter the function of cortical microtubule-binding sites in the bud. Additionally, we present evidence that other bipolar bud site determinants together with cortical actin are also required for spindle orientation.
有丝分裂纺锤体与细胞分裂轴的对齐是酿酒酵母中的一个基本过程,该过程由细胞质微管与细胞皮层之间的相互作用介导。我们发现一种皮层蛋白,即酵母formin Bni1p,是纺锤体定向所必需的。在bni1Δ细胞中观察到两个显著异常。首先,纺锤体极体(SPB)向新出现的芽的初始移动存在缺陷。这种表型与先前在缺乏驱动蛋白Kip3p的细胞中观察到的相似,事实上,BNI1和KIP3被发现处于相同的遗传途径中。其次,微管与皮层之间异常的牵拉相互作用似乎导致bni1Δ细胞中的前期纺锤体在母细胞和芽之间来回移动。因此,我们提出Bni1p可能定位或改变芽中皮层微管结合位点的功能。此外,我们提供证据表明,其他双极芽位点决定因素与皮层肌动蛋白一起也是纺锤体定向所必需的。