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The Saccharomyces cerevisiae RanGTP-binding protein msn5p is involved in different signal transduction pathways.

机译:啤酒酵母RanGTP结合蛋白msn5p参与不同的信号转导途径。

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摘要

In eukaryotes, control of transcription by extracellular signals involves the translocation to the nucleus of at least one component of the signal transduction pathway. Transport through the nuclear envelope requires the activity of an import or export receptor that interacts with the small GTPase Ran. We have cloned the MSN5 gene of the yeast Saccharomyces cerevisiae that is postulated to encode one of these receptors. Msn5p belongs to a family of proteins with a conserved N-terminal sequence that acts as a RanGTP-binding domain. The results presented here provide genetic data supporting Msn5p involvement in several different signal transduction pathways. All of these pathways include changes in gene expression, and regulated nucleocytoplasmic redistribution of a component in response to external conditions has already been described in some of them. We have cloned MSN5 following two different strategies. Msn5p was constitutively localized in the nucleus. Phenotypic analysis of the msn5 mutant demonstrated that this protein participates in processes such as catabolite repression, calcium signaling, mating, and cell proliferation, as well as being involved in previously characterized phosphate utilization. Therefore, Msn5p could be a receptor for several proteins involved in different signaling pathways.
机译:在真核生物中,通过细胞外信号控制转录涉及信号转导途径的至少一种组分向核的易位。通过核被膜的运输需要与小GTPase Ran相互作用的进出口受体的活性。我们已经克隆了酿酒酵母酵母的MSN5基因,假定该基因编码这些受体之一。 Msn5p属于蛋白质家族,具有保守的N端序列,可充当RanGTP结合域。此处提供的结果提供了支持Msn5p参与几种不同信号转导途径的遗传数据。所有这些途径都包括基因表达的变化,其中一些已经描述了响应外部条件的组分的受控核质重新分布。我们已经按照两种不同的策略克隆了MSN5。 Msn5p组成型定位在核中。 msn5突变体的表型分析表明,该蛋白参与了分解代谢物阻遏,钙信号传导,交配和细胞增殖等过程,并参与了先前表征的磷酸盐利用。因此,Msn5p可能是参与不同信号通路的几种蛋白质的受体。

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