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酵母RHO3和RHO4 ras超家族基因对芽的生长是必需的,其缺陷可被高剂量的芽形成基因CDC42和BEM1抑制。

Yeast RHO3 and RHO4 ras superfamily genes are necessary for bud growth, and their defect is suppressed by a high dose of bud formation genes CDC42 and BEM1.

作者信息

Matsui Y, Toh-E A

机构信息

Department of Biology, University of Tokyo, Japan.

出版信息

Mol Cell Biol. 1992 Dec;12(12):5690-9. doi: 10.1128/mcb.12.12.5690-5699.1992.

Abstract

RHO3 and RHO4 are members of the ras superfamily genes of the yeast Saccharomyces cerevisiae and are related functionally to each other. Experiments using a conditionally expressed allele of RHO4 revealed that depletion of both the RHO3 and RHO4 gene products resulted in lysis of cells with a small bud, which could be prevented by the presence of osmotic stabilizing agents in the medium. rho3 rho4 cells incubated in medium containing an osmotic stabilizing agent were rounded and enlarged and displayed delocalized deposition of chitin and delocalization of actin patches, indicating that these cells lost cell polarity. Nine genes whose overexpression could suppress the defect of the RHO3 function were isolated (SRO genes). Two of them were identical with CDC42 and BEM1, bud site assembly genes involved in the process of bud emergence. A high dose of CDC42 complemented the rho3 defect, whereas overexpression of RHO3 had an inhibitory effect on the growth of mutants defective in the CDC24-CDC42 pathway. These results, along with comparison of cell morphology between rho3 rho4 cells and cdc24 (or cdc42) mutant cells kept under the restrictive conditions, strongly suggest that the functions of RHO3 and RHO4 are required after initiation of bud formation to maintain cell polarity during maturation of daughter cells.

摘要

RHO3和RHO4是酿酒酵母ras超家族基因的成员,在功能上相互关联。使用RHO4的条件性表达等位基因进行的实验表明,RHO3和RHO4基因产物的缺失会导致带有小芽的细胞裂解,而培养基中存在渗透稳定剂可防止这种情况发生。在含有渗透稳定剂的培养基中孵育的rho3 rho4细胞呈圆形且增大,并显示几丁质的异位沉积和肌动蛋白斑的异位,这表明这些细胞失去了细胞极性。分离出了九个过表达可抑制RHO3功能缺陷的基因(SRO基因)。其中两个与CDC42和BEM1相同,这两个基因是参与芽出现过程的芽位点组装基因。高剂量的CDC42可弥补rho3缺陷,而RHO3的过表达对CDC24 - CDC42途径缺陷的突变体生长具有抑制作用。这些结果,连同在限制条件下对rho3 rho4细胞和cdc24(或cdc42)突变体细胞的细胞形态进行比较,强烈表明RHO3和RHO4的功能在芽形成开始后是维持子细胞成熟过程中细胞极性所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9294/360509/2bb5796fd87c/molcellb00135-0423-a.jpg

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