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真菌细胞质膜的营养感应。

Nutrient Sensing at the Plasma Membrane of Fungal Cells.

机构信息

VIB-KU Leuven Center for Microbiology KU Leuven, Flanders, Belgium.

Laboratory of Molecular Cell Biology, Institute of Botany and Microbiology, KU Leuven, B-3001 Leuven, Belgium.

出版信息

Microbiol Spectr. 2017 Mar;5(2). doi: 10.1128/microbiolspec.FUNK-0031-2016.

Abstract

To respond to the changing environment, cells must be able to sense external conditions. This is important for many processes including growth, mating, the expression of virulence factors, and several other regulatory effects. Nutrient sensing at the plasma membrane is mediated by different classes of membrane proteins that activate downstream signaling pathways: nontransporting receptors, transceptors, classical and nonclassical G-protein-coupled receptors, and the newly defined extracellular mucin receptors. Nontransporting receptors have the same structure as transport proteins, but have lost the capacity to transport while gaining a receptor function. Transceptors are transporters that also function as a receptor, because they can rapidly activate downstream signaling pathways. In this review, we focus on these four types of fungal membrane proteins. We mainly discuss the sensing mechanisms relating to sugars, ammonium, and amino acids. Mechanisms for other nutrients, such as phosphate and sulfate, are discussed briefly. Because the model yeast Saccharomyces cerevisiae has been the most studied, especially regarding these nutrient-sensing systems, each subsection will commence with what is known in this species.

摘要

为了应对不断变化的环境,细胞必须能够感知外部条件。这对于包括生长、交配、毒力因子表达和其他几种调节作用在内的许多过程都很重要。质膜的营养感应是由不同类别的膜蛋白介导的,这些蛋白可以激活下游信号通路:非转运受体、转受体、经典和非经典 G 蛋白偶联受体,以及新定义的细胞外粘蛋白受体。非转运受体具有与转运蛋白相同的结构,但在获得受体功能的同时失去了转运能力。转受体是一种同时具有转运和受体功能的转运蛋白,因为它们可以快速激活下游信号通路。在这篇综述中,我们重点介绍了这四种真菌膜蛋白。我们主要讨论了与糖、铵和氨基酸有关的感应机制。简要讨论了其他营养素(如磷酸盐和硫酸盐)的机制。由于模式酵母酿酒酵母(Saccharomyces cerevisiae)在这些营养感应系统方面的研究最为深入,因此每个小节将从该物种的相关知识开始介绍。

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