HemN2 Regulates the Virulence of Pseudomonas donghuensis HYS through 7-Hydroxytropolone Synthesis and Oxidative Stress

Biology Pub Date : 2024-05-24 DOI:10.3390/biology13060373
Yaqian Xiao, Wang Xiang, Xuerui Ma, Donghao Gao, Hasan Bayram, George H. Lorimer, R. Ghiladi, Zhixiong Xie, Jun Wang
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Abstract

Compared to pathogens Pseudomonas aeruginosa and P. putida, P. donghuensis HYS has stronger virulence towards Caenorhabditis elegans. However, the underlying mechanisms haven’t been fully understood. The heme synthesis system is essential for Pseudomonas virulence, and former studies of HemN have focused on the synthesis of heme, while the relationship between HemN and Pseudomonas virulence were barely pursued. In this study, we hypothesized that hemN2 deficiency affected 7-hydroxytropolone (7-HT) biosynthesis and redox levels, thereby reducing bacterial virulence. There are four hemN genes in P. donghuensis HYS, and we reported for the first time that deletion of hemN2 significantly reduced the virulence of HYS towards C. elegans, whereas the reduction in virulence by the other three genes was not significant. Interestingly, hemN2 deletion significantly reduced colonization of P. donghuensis HYS in the gut of C. elegans. Further studies showed that HemN2 was regulated by GacS and participated in the virulence of P. donghuensis HYS towards C. elegans by mediating the synthesis of the virulence factor 7-HT. In addition, HemN2 and GacS regulated the virulence of P. donghuensis HYS by affecting antioxidant capacity and nitrative stress. In short, the findings that HemN2 was regulated by the Gac system and that it was involved in bacterial virulence via regulating 7-HT synthesis and redox levels were reported for the first time. These insights may enlighten further understanding of HemN-based virulence in the genus Pseudomonas.
HemN2 通过 7-羟基前列酮合成和氧化应激调控东湖假单胞菌 HYS 的毒性
与铜绿假单胞菌(Pseudomonas aeruginosa)和普氏假单胞菌(P. putida)相比,东湖假单胞菌(P. donghuensis HYS)对秀丽隐杆线虫(Caenorhabditis elegans)的毒力更强。然而,其基本机制尚未完全清楚。血红素合成系统对假单胞菌的毒力至关重要,以前对 HemN 的研究主要集中在血红素的合成上,而对 HemN 与假单胞菌毒力之间的关系几乎没有深入研究。在本研究中,我们假设 HemN2 缺乏会影响 7-羟基前列酮(7-HT)的生物合成和氧化还原水平,从而降低细菌的毒力。在 P. donghuensis HYS 中有四个 hemN 基因,我们首次报道了缺失 hemN2 会显著降低 HYS 对 C. elegans 的毒力,而其他三个基因对毒力的降低并不显著。有趣的是,缺失 hemN2 能显著减少 P. donghuensis HYS 在秀丽隐杆线虫肠道中的定殖。进一步的研究表明,HemN2 受 GacS 的调控,通过介导毒力因子 7-HT 的合成,参与了 P. donghuensis HYS 对 elegans 的毒力作用。此外,HemN2 和 GacS 还通过影响抗氧化能力和硝化压力来调节 P. donghuensis HYS 的毒力。总之,HemN2受Gac系统调控,并通过调控7-HT的合成和氧化还原水平参与细菌毒力的发现是首次报道。这些发现可能有助于进一步了解假单胞菌属中基于 HemN 的毒力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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