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裂殖酵母中与Rheb相关的GTP酶Rhb1的缺失会导致生长停滞,并呈现出与氮饥饿所引起的相似的终末表型。

Loss of Rhb1, a Rheb-related GTPase in fission yeast, causes growth arrest with a terminal phenotype similar to that caused by nitrogen starvation.

作者信息

Mach K E, Furge K A, Albright C F

机构信息

Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN 37232-0146, USA.

出版信息

Genetics. 2000 Jun;155(2):611-22. doi: 10.1093/genetics/155.2.611.

Abstract

The Rheb GTPase is most similar in primary sequence to the Ras, Rap, R-Ras, and Ral GTPases, which regulate cell growth and differentiation in many cell types. A likely fission yeast homologue of mammalian Rheb, which we designated Rhb1, was identified by genome sequencing. Our investigation of rhb1 showed that rhb1(-) cells arrested cell growth and division with a terminal phenotype similar to that of nitrogen-starved cells. In particular, cells depleted of Rhb1 arrested as small, round cells with 1N DNA content, arrested more quickly in low-nitrogen medium, and induced expression of fnx1 and mei2 mRNA, two mRNAs that were normally induced by nitrogen starvation. Since mammalian Rheb binds and may regulate Raf-1, a Ras effector, we tested for functional overlap between Ras1 and Rhb1 in fission yeast. This analysis showed that Ras1 overexpression did not suppress rhb1(-) mutant phenotypes, Rhb1 overexpression did not suppress ras1(-) mutant phenotypes, and ras1(-) rhb1(-) double mutants had phenotypes equal to the sum of the corresponding single-mutant phenotypes. Hence, there is no evidence for overlapping functions between Ras1 and Rhb1. On the basis of this study, we hypothesize that Rhb1 negatively regulates entry into stationary phase when extracellular nitrogen levels are adequate for growth. If this hypothesis is correct, then Rhb1 and Ras1 regulate alternative responses to limiting nutrients.

摘要

Rheb GTP酶在一级序列上与Ras、Rap、R-Ras和Ral GTP酶最为相似,这些酶在许多细胞类型中调节细胞生长和分化。通过基因组测序鉴定出一种可能是哺乳动物Rheb的裂殖酵母同源物,我们将其命名为Rhb1。我们对rhb1的研究表明,rhb1(-)细胞停止细胞生长和分裂,其终末表型类似于氮饥饿细胞。特别是,缺乏Rhb1的细胞停滞为具有1N DNA含量的小圆形细胞,在低氮培养基中更快停滞,并诱导fnx1和mei2 mRNA的表达,这两种mRNA通常由氮饥饿诱导。由于哺乳动物Rheb结合并可能调节Raf-1(一种Ras效应器),我们测试了裂殖酵母中Ras1和Rhb1之间的功能重叠。该分析表明,Ras1过表达不能抑制rhb1(-)突变体表型,Rhb1过表达不能抑制ras1(-)突变体表型,并且ras1(-)rhb1(-)双突变体的表型等于相应单突变体表型之和。因此,没有证据表明Ras1和Rhb1之间存在功能重叠。基于这项研究,我们假设当细胞外氮水平足以支持生长时,Rhb1负向调节进入静止期。如果这个假设正确,那么Rhb1和Ras1调节对有限营养的不同反应。

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