Hou Jia, Lin Haiyan, Ding Jinli, Feng Mingguang, Ying Shenghua
Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.
J Fungi (Basel). 2022 Jun 10;8(6):622. doi: 10.3390/jof8060622.
In filamentous fungi, recycling of receptors responsible for protein targeting to peroxisomes depends on the receptor export system (RES), which consists of peroxins Pex1, Pex6, and Pex26. This study seeks to functionally characterize these peroxins in the entomopathogenic fungus . BbPex1, BbPex6, and BbPex26 are associated with peroxisomes and interact with each other. The loss of these peroxins did not completely abolish the peroxisome biogenesis. Three peroxins were all absolutely required for PTS1 pathway; however, only BbPex6 and BbPex26 were required for protein translocation via PTS2 pathway. Three gene disruption mutants displayed the similar phenotypic defects in assimilation of nutrients (e.g., fatty acid, protein, and chitin), stress response (e.g., oxidative and osmotic stress), and virulence. Notably, all disruptant displayed significantly enhanced sensitivity to linoleic acid, a polyunsaturated fatty acid. This study reinforces the essential roles of the peroxisome in the lifecycle of entomopathogenic fungi and highlights peroxisomal roles in combating the host defense system.
在丝状真菌中,负责将蛋白质靶向过氧化物酶体的受体的循环利用依赖于受体输出系统(RES),该系统由过氧化物酶Pex1、Pex6和Pex26组成。本研究旨在对昆虫病原真菌中的这些过氧化物酶进行功能表征。BbPex1、BbPex6和BbPex26与过氧化物酶体相关联且相互作用。这些过氧化物酶的缺失并没有完全消除过氧化物酶体的生物发生。这三种过氧化物酶对于PTS1途径都是绝对必需的;然而,对于通过PTS2途径的蛋白质转运,仅需要BbPex6和BbPex26。三个基因敲除突变体在营养物质(如脂肪酸、蛋白质和几丁质)同化、应激反应(如氧化应激和渗透应激)以及毒力方面表现出相似的表型缺陷。值得注意的是,所有突变体对多不饱和脂肪酸亚油酸均表现出显著增强的敏感性。本研究强化了过氧化物酶体在昆虫病原真菌生命周期中的重要作用,并突出了过氧化物酶体在对抗宿主防御系统中的作用。