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酿酒酵母环磷酸腺苷依赖性蛋白激酶通过Rim15p蛋白激酶控制进入稳定期。

Saccharomyces cerevisiae cAMP-dependent protein kinase controls entry into stationary phase through the Rim15p protein kinase.

作者信息

Reinders A, Bürckert N, Boller T, Wiemken A, De Virgilio C

机构信息

Botanisches Institut der Universität, CH-4056 Basel, Switzerland.

出版信息

Genes Dev. 1998 Sep 15;12(18):2943-55. doi: 10.1101/gad.12.18.2943.

Abstract

The Saccharomyces cerevisiae protein kinase Rim15p was identified previously as a stimulator of meiotic gene expression. Here, we show that loss of Rim15p causes an additional pleiotropic phenotype in cells grown to stationary phase on rich medium; this phenotype includes defects in trehalose and glycogen accumulation, in transcriptional derepression of HSP12, HSP26, and SSA3, in induction of thermotolerance and starvation resistance, and in proper G1 arrest. These phenotypes are commonly associated with hyperactivity of the Ras/cAMP pathway. Tests of epistasis suggest that Rim15p may act in this pathway downstream of the cAMP-dependent protein kinase (cAPK). Accordingly, deletion of RIM15 suppresses the growth defect of a temperature-sensitive adenylate-cyclase mutant and, most importantly, renders cells independent of cAPK activity. Conversely, overexpression of RIM15 suppresses phenotypes associated with a mutation in the regulatory subunit of cAPK, exacerbates the growth defect of strains compromised for cAPK activity, and partially induces a starvation response in logarithmically growing wild-type cells. Biochemical analyses reveal that cAPK-mediated in vitro phosphorylation of Rim15p strongly inhibits its kinase activity. Taken together, these results place Rim15p immediately downstream and under negative control of cAPK and define a positive regulatory role of Rim15p for entry into both meiosis and stationary phase.

摘要

酿酒酵母蛋白激酶Rim15p先前被鉴定为减数分裂基因表达的刺激因子。在此,我们表明,在丰富培养基上生长至稳定期的细胞中,Rim15p的缺失会导致另外一种多效性表型;这种表型包括海藻糖和糖原积累缺陷、HSP12、HSP26和SSA3转录去抑制缺陷、耐热性和饥饿抗性诱导缺陷以及适当的G1期停滞。这些表型通常与Ras/cAMP途径的过度激活有关。上位性测试表明,Rim15p可能在该途径中作用于cAMP依赖性蛋白激酶(cAPK)的下游。因此,RIM15的缺失抑制了温度敏感型腺苷酸环化酶突变体的生长缺陷,并且最重要的是,使细胞不依赖于cAPK活性。相反,RIM15的过表达抑制了与cAPK调节亚基突变相关的表型,加剧了cAPK活性受损菌株的生长缺陷,并在对数生长期的野生型细胞中部分诱导了饥饿反应。生化分析表明,cAPK介导的Rim15p体外磷酸化强烈抑制其激酶活性。综上所述,这些结果表明Rim15p直接位于cAPK下游并受其负调控,并确定了Rim15p在进入减数分裂和稳定期过程中的正向调节作用。

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