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The mitochondrial protein Mcu1 plays important roles in carbon source utilization, filamentation, and virulence in Candida albicans

机译:线粒体蛋白Mcu1在白色念珠菌的碳源利用,纤维化和毒力中起重要作用

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The fungus Candida albicans is both a pathogen and a commensal in humans. The ability to utilize different carbon sources available in diverse host niches is vital for both commensalism and pathogenicity. N-acetylglucosamine (GlcNAc) is an important signaling molecule as well as a carbon source in C. albicans. Here, we report the discovery of a novel gene MCU1 essential for GlcNAc utilization. Mcu1 is located in mitochondria and associated with multiple energy- and metabolism-related proteins including Pori, Atp1, Pet9, and Mdh1. Consistently, inactivating Por1 impaired GlcNAc utilization as well. Deletion of MCU1 also caused defects in utilizing non-fermentable carbon sources and amino acids. Furthermore, MCU1 is required for filamentation in several inducing conditions and virulence in a mouse systemic infection model. We also deleted TGL99 and GUP1, two genes adjacent to MCU1, and found that the gup1/gup1 mutant exhibited mild defects in the utilization of several carbon sources including GlcNAc, maltose, galactose, amino acids, and ethanol. Our results indicate that MCU1 exists in a cluster of genes involved in the metabolism of carbon sources. Given its importance in metabolism and lack of a homolog in humans, Mcu1 could be a potential target for developing antifungal agents. (C) 2015 Elsevier Inc. All rights reserved.
机译:真菌白色念珠菌既是人类的病原体又是共生的。利用不同宿主生态位中可用的不同碳源的能力对于共鸣和致病性都至关重要。 N-乙酰氨基葡萄糖(GlcNAc)是白色念珠菌的重要信号分子,也是碳源。在这里,我们报告发现了对GlcNAc利用必不可少的新型基因MCU1。 Mcu1位于线粒体中,并与多种与能量和代谢相关的蛋白质相关,包括Pori,Atp1,Pet9和Mdh1。一致地,灭活Por1也会损害GlcNAc的利用率。 MCU1的删除也导致了利用不可发酵碳源和氨基酸的缺陷。此外,MCU1在多种诱导条件和小鼠全身感染模型中的致病性中需要丝状化。我们还删除了与MCU1相邻的两个基因TGL99和GUP1,发现gup1 / gup1突变体在利用几种碳源(包括GlcNAc,麦芽糖,半乳糖,氨基酸和乙醇)中表现出轻微的缺陷。我们的结果表明,MCU1存在于与碳源代谢有关的基因簇中。鉴于其在人体新陈代谢中的重要性以及在人类中缺乏同系物,Mcu1可能成为开发抗真菌剂的潜在目标。 (C)2015 Elsevier Inc.保留所有权利。

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