首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >A Rab escort protein integrates the secretion system with TOR signaling and ribosome biogenesis.
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A Rab escort protein integrates the secretion system with TOR signaling and ribosome biogenesis.

机译:Rab伴游蛋白将分泌系统与TOR信号传导和核糖体生物发生整合在一起。

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摘要

The coupling of environmental conditions to cell growth and division is integral to cell fitness. In Saccharomyces cerevisiae, the transcription factor Sfp1 couples nutrient status to cell growth rate by controlling the expression of ribosome biogenesis (Ribi) and ribosomal protein (RP) genes. Sfp1 is localized to the nucleus in rich nutrients, but upon nutrient limitation or target of rapamycin (TOR) pathway inhibition by rapamycin, Sfp1 rapidly exits the nucleus, leading to repression of the Ribi/RP regulons. Through systematic cell-based screens we found that many components of the secretory system influence Sfp1 localization. Notably, the essential Rab escort protein Mrs6 exhibited a nutrient-sensitive interaction with Sfp1. Overexpression of Mrs6 prevented nuclear localization of Sfp1 in rich nutrients, whereas loss of Mrs6 resulted in nuclear Sfp1 localization in poor nutrients. These effects were specific to Sfp1 and independent of the protein kinase C (PKC) pathway, suggesting that Mrs6 lies in a distinct branch of TOR and ribosome biogenesis regulation. Rapamycin-resistant alleles of MRS6 were defective in the cytoplasmic retention of Sfp1, the control of cell size, and in the repression of the Ribi/RP regulons. The Sfp1-Mrs6 interaction is a nexus for growth regulation that links the secretory system and TOR-dependent nutrient signaling to ribosome biogenesis.
机译:环境条件与细胞生长和分裂的耦合对于细胞适应性是必不可少的。在酿酒酵母中,转录因子Sfp1通过控制核糖体生物发生(Ribi)和核糖体蛋白(RP)基因的表达,将营养状态与细胞生长速度联系起来。 Sfp1位于富含营养的核中,但是在营养限制或雷帕霉素(rapamycin)抑制雷帕霉素(TOR)通路的靶标后,Sfp1迅速离开核,从而导致Ribi / RP调控因子被抑制。通过系统的基于细胞的筛选,我们发现分泌系统的许多组件都影响Sfp1的定位。值得注意的是,必需的Rab伴游蛋白Mrs6与Sfp1表现出营养敏感的相互作用。 Mrs6的过表达阻止了Sfp1在富营养物中的核定位,而Mrs6的缺失导致Sfp1在富营养物中的核定位。这些影响是特定于Sfp1的,并且独立于蛋白激酶C(PKC)途径,表明Mrs6位于TOR和核糖体生物发生调控的不同分支中。 MRS6的雷帕霉素抗性等位基因在Sfp1的胞质保留,细胞大小的控制以及Ribi / RP调节子的阻遏方面存在缺陷。 Sfp1-Mrs6相互作用是生长调节的纽带,它将分泌系统和TOR依赖的营养信号转导与核糖体的生物发生。

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