Department of Cell and Developmental Biology, Vanderbilt University, Nashville, TN.
Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, NY.
J Cell Biol. 2019 Mar 4;218(3):977-992. doi: 10.1083/jcb.201712144. Epub 2019 Jan 4.
Regulation of plasma membrane (PM) protein abundance by selective endocytosis is critical for cellular adaptation to stress or changing nutrient availability. One example involves rapid endocytic turnover of Mup1, a yeast methionine transporter, in response to increased methionine availability. Here, we report that methionine triggers rapid translocation of the ubiquitin ligase adaptor Art1 to the PM and dephosphorylation of Art1 at specific threonine residues. This methionine-induced dephosphorylation of Art1 is mediated by Ppz phosphatases, and analysis of phosphomimetic and phosphorylation-defective variants of Art1 indicates that these events toggle Art1 recognition of Mup1 at the PM. Importantly, we find that Ppz phosphatases are dispensable for Art1 PM translocation, but are required for Art1 interaction with Mup1. Based on our findings, we propose that methionine influx triggers Art1 translocation to the PM, followed by Ppz-mediated dephosphorylation which promotes cargo recognition at the PM.
质膜(PM)蛋白丰度的调节通过选择性内吞作用对于细胞适应应激或改变营养可用性至关重要。一个例子涉及到酵母蛋氨酸转运蛋白 Mup1 的快速内吞作用的周期性变化,以响应增加的蛋氨酸可用性。在这里,我们报告说蛋氨酸触发了泛素连接酶接头 Art1 向 PM 的快速易位,以及 Art1 在特定苏氨酸残基上的去磷酸化。这种蛋氨酸诱导的 Art1 去磷酸化是由 Ppz 磷酸酶介导的,并且对 Art1 的磷酸模拟和磷酸缺陷变体的分析表明,这些事件切换了 Art1 在 PM 处对 Mup1 的识别。重要的是,我们发现 Ppz 磷酸酶对于 Art1 PM 易位不是必需的,但对于 Art1 与 Mup1 的相互作用是必需的。基于我们的发现,我们提出蛋氨酸流入触发 Art1 向 PM 的易位,随后是 Ppz 介导的去磷酸化,从而促进在 PM 处的货物识别。