Institut Jacques Monod, Centre National de la Recherche Scientifique, UMR 7592, Université Paris Diderot, Sorbonne Paris Cité, F-75205 Paris, France.
J Cell Biol. 2012 Jan 23;196(2):247-59. doi: 10.1083/jcb.201109113. Epub 2012 Jan 16.
Endocytosis regulates the plasma membrane protein landscape in response to environmental cues. In yeast, the endocytosis of transporters depends on their ubiquitylation by the Nedd4-like ubiquitin ligase Rsp5, but how extracellular signals trigger this ubiquitylation is unknown. Various carbon source transporters are known to be ubiquitylated and endocytosed when glucose-starved cells are exposed to glucose. We show that this required the conserved arrestin-related protein Rod1/Art4, which was activated in response to glucose addition. Indeed, Rod1 was a direct target of the glucose signaling pathway composed of the AMPK homologue Snf1 and the PP1 phosphatase Glc7/Reg1. Glucose promoted Rod1 dephosphorylation and its subsequent release from a phospho-dependent interaction with 14-3-3 proteins. Consequently, this allowed Rod1 ubiquitylation by Rsp5, which was a prerequisite for transporter endocytosis. This paper therefore demonstrates that the arrestin-related protein Rod1 relays glucose signaling to transporter endocytosis and provides the first molecular insights into the nutrient-induced activation of an arrestin-related protein through a switch in post-translational modifications.
内吞作用调节质膜蛋白景观以响应环境线索。在酵母中,转运蛋白的内吞作用依赖于 Nedd4 样泛素连接酶 Rsp5 对其的泛素化,但细胞外信号如何触发这种泛素化尚不清楚。当葡萄糖饥饿的细胞暴露于葡萄糖时,已知各种碳源转运蛋白被泛素化和内吞。我们表明,这需要保守的 arrestin 相关蛋白 Rod1/Art4,它在葡萄糖添加时被激活。事实上,Rod1 是由 AMPK 同源物 Snf1 和 PP1 磷酸酶 Glc7/Reg1 组成的葡萄糖信号通路的直接靶标。葡萄糖促进 Rod1 去磷酸化,随后从与 14-3-3 蛋白的磷酸依赖性相互作用中释放。结果,这使得 Rod1 能够被 Rsp5 泛素化,这是转运蛋白内吞作用的先决条件。因此,本文证明 arrestin 相关蛋白 Rod1 将葡萄糖信号传递到转运蛋白内吞作用,并提供了第一个分子见解,即通过翻译后修饰的转换, arrestin 相关蛋白被营养物激活。