Chen C R, Li Y C, Chen J, Hou M C, Papadaki P, Chang E C
Department of Biology, New York University, 1009 Main Building, 100 Washington Square East, New York, NY 10003-6688, USA.
Proc Natl Acad Sci U S A. 1999 Jan 19;96(2):517-22. doi: 10.1073/pnas.96.2.517.
In fission yeast, Scd1/Ral1 is a putative guanine nucleotide exchange factor for Cdc42sp and also acts as a Ras1 effector necessary for the regulation of cytoskeleton organization. In this study, we have characterized a protein, Moe1, that binds directly to Scd1. A moe1 null (Delta) mutant exhibits numerous phenotypes indicative of abnormal microtubule functioning, including an abnormality in the spindle. moe1Delta mutants are resistant to microtubule destabilizing agents; moreover, moe1Delta rescued the growth defects of tubulin mutants containing unstable microtubules. These results suggest that Moe1 induces instability in microtubules. Biochemical and subcellular localization studies suggest that Moe1 and Scd1 colocalize in the nucleus. Furthermore, loss of function in Scd1 or Ras1 also induced abnormality in the spindle and is synthetically lethal with moe1Delta producing cells that lack a detectable spindle. These data demonstrate that Moe1 is a component of the Ras1 pathway necessary for proper spindle formation in the nucleus. Human and nematode Moe1 both can substitute for yeast Moe1, indicating that the function of Moe1 in spindle formation has been conserved substantially during evolution.
在裂殖酵母中,Scd1/Ral1是一种假定的Cdc42sp鸟嘌呤核苷酸交换因子,同时也是调节细胞骨架组织所必需的Ras1效应器。在本研究中,我们鉴定了一种直接与Scd1结合的蛋白质Moe1。moe1基因敲除(Δ)突变体表现出许多表明微管功能异常的表型,包括纺锤体异常。moe1Δ突变体对微管破坏剂具有抗性;此外,moe1Δ挽救了含有不稳定微管的微管蛋白突变体的生长缺陷。这些结果表明Moe1诱导微管不稳定。生化和亚细胞定位研究表明Moe1和Scd1在细胞核中共定位。此外,Scd1或Ras1的功能丧失也会诱导纺锤体异常,并且与产生缺乏可检测到的纺锤体的细胞的moe1Δ具有合成致死性。这些数据表明Moe1是细胞核中正常纺锤体形成所必需的Ras1途径的一个组成部分。人类和线虫的Moe1都可以替代酵母Moe1,这表明Moe1在纺锤体形成中的功能在进化过程中得到了很大程度的保留。