Department of Cell and Developmental Biology, Vanderbilt University, Nashville, Tennessee, United States of America.
PLoS Genet. 2020 Mar 19;16(3):e1008677. doi: 10.1371/journal.pgen.1008677. eCollection 2020 Mar.
Endocytosis is regulated in response to changing environmental conditions to adjust plasma membrane (PM) protein composition for optimal cell growth. Protein networks involved in cargo capture and sorting, membrane sculpting and deformation, and vesicle scission have been well-characterized, but less is known about the networks that sense extracellular cues and relay signals to trigger endocytosis of specific cargo. Hal4 and Hal5 are yeast Snf1-related kinases that were previously reported to regulate nutrient transporter stability by an unknown mechanism. Here we demonstrate that loss of Hal4 and Hal5 activates endocytosis of many different kinds of PM proteins, including Art1-mediated and Art1-independent endocytic events. Acute inhibition of Hal5 in the absence of Hal4 triggers rapid endocytosis, suggesting that Hal kinases function in a nutrient-sensing relay upstream of the endocytic response. Interestingly, Hal5 localizes to the PM, but shifts away from the cell surface in response to stimulation with specific nutrients. We propose that Hal5 functions as a nutrient-responsive regulator of PM protein stability, antagonizing endocytosis and promoting stability of endocytic cargos at the PM in nutrient-limiting conditions.
内吞作用是受环境变化调节的,以调整质膜(PM)蛋白组成,从而实现最佳细胞生长。参与货物捕获和分拣、膜成型和变形以及囊泡分裂的蛋白质网络已经得到很好的描述,但对于感知细胞外信号并传递信号以触发特定货物内吞的网络知之甚少。Hal4 和 Hal5 是酵母 Snf1 相关激酶,先前的研究表明它们通过未知机制调节营养转运体的稳定性。在这里,我们证明 Hal4 和 Hal5 的缺失激活了许多不同类型的 PM 蛋白的内吞作用,包括 Art1 介导和 Art1 非依赖的内吞事件。在没有 Hal4 的情况下急性抑制 Hal5 会触发快速的内吞作用,这表明 Hal 激酶在营养感应的信号转导途径中起作用,位于内吞反应的上游。有趣的是,Hal5 定位于 PM,但在受到特定营养物质刺激时会从细胞膜上转移。我们提出 Hal5 作为 PM 蛋白稳定性的营养响应调节剂发挥作用,在营养限制条件下拮抗内吞作用,并促进内吞货物在 PM 上的稳定性。