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首页> 外文期刊>Biotechnology Journal >Heterologous expression of a plant uracil transporter in yeast: Improvement of plasma membrane targeting in mutants of the Rsp5p ubiquitin protein ligase
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Heterologous expression of a plant uracil transporter in yeast: Improvement of plasma membrane targeting in mutants of the Rsp5p ubiquitin protein ligase

机译:酵母中植物尿嘧啶转运蛋白的异源表达:Rsp5p泛素蛋白连接酶突变体中质膜靶向的改善

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Plasma membrane proteins involved in transport processes play a crucial role in cell physiology. On account of these properties, these molecules are ideal targets for development of new therapeutic and agronomic agents. However, these proteins are of low abundance, which limits their study. Although yeast seems ideal for expressing heterologous transporters, plasma membrane proteins are often retained in intracellular compartments. We tried to find yeast mutants potentially able to improve functional expression of a whole set of heterologous transporters. We focused on Arabidopsis thaliana ureide transporter 1 (AtUPS1), previously cloned by functional complementation in yeast. Tagged versions of AtUPS1 remain mostly trapped in the endoplasmic retic-ulum and were able to reach slowly the plasma membrane. In contrast, untagged AtUPS1 is rapidly delivered to plasma membrane, where it remains in stable form. Tagged and untagged versions of AtUPS1 were expressed in cells deficient in the ubiquitin ligase Rsp5p, involved in various stages of the intracellular trafficking of membrane-bound proteins. rsp5 mutants displayed improved steady state amounts of untagged and tagged versions of AtUPS1. rsp5 cells are thus powerful tools to solve the many problems inherent to heterologous expression of membrane proteins in yeast, including ER retention.
机译:参与运输过程的质膜蛋白在细胞生理中起着至关重要的作用。由于这些特性,这些分子是开发新型治疗剂和农艺剂的理想靶标。然而,这些蛋白质的丰度低,限制了它们的研究。尽管酵母似乎是表达异源转运蛋白的理想选择,但质膜蛋白通常保留在细胞内区室中。我们试图发现酵母突变体潜在地能够改善整套异源转运蛋白的功能表达。我们专注于拟南芥尿素转运蛋白1(AtUPS1),以前通过酵母中的功能互补克隆。标记版本的AtUPS1仍然大部分被捕获在内质网中,并能够缓慢到达质膜。相比之下,未加标签的AtUPS1会迅速传递到质膜,并保持稳定状态。在缺乏泛素连接酶Rsp5p的细胞中表达了AtUPS1的标签和未标签版本,该细胞参与膜结合蛋白在细胞内运输的各个阶段。 rsp5突变体显示AtUPS1的未标记和标记版本的稳态量有所提高。因此,rsp5细胞是解决酵母中膜蛋白异源表达固有的许多问题(包括ER保留)的强大工具。

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