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A Split-Ubiquitin Two-Hybrid Screen for Proteins Physically Interacting with the Yeast Amino Acid Transceptor Gap1 and Ammonium Transceptor Mep2

机译:拆分泛素两杂交筛选的蛋白质与酵母氨基酸受体Gap1和铵受体Mep2物理相互作用。

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摘要

Several nutrient permeases have been identified in yeast, which combine a transport and receptor function, and are called transceptors. The Gap1 general amino acid permease and the Mep2 ammonium permease mediate rapid activation by amino acids and by ammonium, respectively, of the protein kinase A (PKA) pathway in nitrogen-starved cells. Their mode of action is not well understood. Both proteins are subject to complex controls governing their intracellular trafficking. Using a split-ubiquitin yeast two-hybrid screen with Gap1 or Mep2 as bait, we identified proteins putatively interacting with Gap1 and/or Mep2. They are involved in glycosylation, the secretory pathway, sphingolipid biosynthesis, cell wall biosynthesis and other processes. For several candidate interactors, determination of transport and signaling capacity, as well as localization of Gap1 or Mep2 in the corresponding deletion strains, confirmed a functional interaction with Gap1 and/or Mep2. Also common interacting proteins were identified. Transport and signaling were differentially affected in specific deletion strains, clearly separating the two functions of the transceptors and confirming that signaling does not require transport. We identified two new proteins, Bsc6 and Yir014w, that affect trafficking or downregulation of Gap1. Deletion of EGD2, YNL024c or SPC2 inactivates Gap1 transport and signaling, while its plasma membrane level appears normal.. Vma4 is required for Mep2 expression, while Gup1 appears to be required for proper distribution of Mep2 over the plasma membrane. Some of the interactions were confirmed by GST pull-down assay, using the C-terminal tail of Gap1 or Mep2 expressed in E.coli. Our results reveal the effectiveness of split-ubiquitin two-hybrid screening for identification of proteins functionally interacting with membrane proteins. They provide several candidate proteins involved in the transport and signaling function or in the complex trafficking control of the Gap1 and Mep2 transceptors.
机译:酵母中已鉴定出几种营养通透酶,它们结合了运输和受体功能,被称为收发器。 Gap1通用氨基酸通透酶和Mep2铵通透酶分别通过氨基酸和铵离子介导氮饥饿细胞中蛋白激酶A(PKA)途径的快速激活。他们的行动方式尚不十分清楚。两种蛋白质都受到控制其细胞内运输的复杂控制。使用以Gap1或Mep2为诱饵的分裂泛素酵母双杂交筛选,我们确定了与Gap1和/或Mep2相互作用的蛋白。它们参与糖基化,分泌途径,鞘脂生物合成,细胞壁生物合成和其他过程。对于几种候选相互作用子,转运和信号传导能力的确定以及相应缺失菌株中Gap1或Mep2的定位,证实了与Gap1和/或Mep2的功能相互作用。还鉴定了常见的相互作用蛋白。在特定的缺失菌株中,运输和信号传导受到不同的影响,从而清楚地区分了收发器的两个功能,并确认信号传导不需要运输。我们鉴定了两个新蛋白Bsc6和Yir014w,它们影响Gap1的运输或下调。缺失EGD2,YNL024c或SPC2会失活Gap1的运输和信号转导,而其质膜水平却是正常的。Mep2表达需要Vma4,而Mep2在质膜上的正确分布则需要Gup1。通过使用在大肠杆菌中表达的Gap1或Mep2的C末端尾部,通过GST下拉测定法确认了某些相互作用。我们的研究结果揭示了分裂泛素双杂交筛选对鉴定与膜蛋白功能相互作用的蛋白的有效性。他们提供了几种候选蛋白,它们参与了Gap1和Mep2受体的转运和信号传导功能或复杂的运输控制。

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