SUMO-targeted Ubiquitin Ligases as crucial mediators of protein homeostasis in Candida glabrata.

IF 5.5 1区 医学 Q1 MICROBIOLOGY PLoS Pathogens Pub Date : 2024-12-06 eCollection Date: 2024-12-01 DOI:10.1371/journal.ppat.1012742
Dipika Gupta, Renu Shukla, Krishnaveni Mishra
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Abstract

Candida glabrata is an opportunistic human pathogen, capable of causing severe systemic infections that are often resistant to standard antifungal treatments. To understand the importance of protein SUMOylation in the physiology and pathogenesis of C. glabrata, we earlier identified the components of SUMOylation pathway and demonstrated that the deSUMOylase CgUlp2 is essential for pathogenesis. In this work we show that the CgUlp2 is essential to maintain protein homeostasis via the SUMO-targeted ubiquitin ligase pathway. The dual loss of deSUMOylase and specific ubiquitin ligase, CgSlx8, results in heightened protein degradation, rendering the cells vulnerable to various stressors. This degradation affects crucial processes such as purine biosynthesis and compromises mitochondrial function in the mutants. Importantly, the absence of these ubiquitin ligases impedes the proliferation of C. glabrata in macrophages. These findings underscore the significance of SUMOylation and SUMO-mediated protein homeostasis as pivotal regulators of C. glabrata physiology and capacity to survive in host cells. Understanding these mechanisms could pave the way for the development of effective antifungal treatments.

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sumo靶向泛素连接酶作为光假丝酵母蛋白稳态的重要介质。
光秃念珠菌是一种机会性的人类病原体,能够引起严重的全身感染,通常对标准的抗真菌治疗具有耐药性。为了了解蛋白质sumoylylation在C. glabrata的生理和发病机制中的重要性,我们早期鉴定了sumoylylation途径的组成部分,并证明了deSUMOylase CgUlp2在发病机制中是必不可少的。在这项工作中,我们表明CgUlp2是通过sumo靶向泛素连接酶途径维持蛋白质稳态所必需的。deSUMOylase和特异性泛素连接酶CgSlx8的双重缺失导致蛋白质降解加剧,使细胞容易受到各种应激源的影响。这种降解影响了嘌呤生物合成等关键过程,并损害了突变体的线粒体功能。重要的是,这些泛素连接酶的缺失阻碍了巨噬细胞中C. glabrata的增殖。这些发现强调了sumo化和sumo介导的蛋白稳态作为光棘草生理和在宿主细胞中生存能力的关键调节因子的重要性。了解这些机制可以为开发有效的抗真菌治疗铺平道路。
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来源期刊
PLoS Pathogens
PLoS Pathogens MICROBIOLOGY-PARASITOLOGY
自引率
3.00%
发文量
598
期刊介绍: Bacteria, fungi, parasites, prions and viruses cause a plethora of diseases that have important medical, agricultural, and economic consequences. Moreover, the study of microbes continues to provide novel insights into such fundamental processes as the molecular basis of cellular and organismal function.
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