一种新型的布鲁氏菌T4SS效应物RS15060作用于细菌形态、脂多糖核心合成和宿主促炎反应,有利于提高布鲁氏菌的毒力。

IF 6.1 1区 生物学 Q1 MICROBIOLOGY
Microbiological research Pub Date : 2025-03-01 Epub Date: 2024-12-13 DOI:10.1016/j.micres.2024.128015
Yi Yin, Mingxing Tian, Guangdong Zhang, Chan Ding, Shengqing Yu
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引用次数: 0

摘要

布鲁氏菌依靠IV型分泌系统(T4SS)在宿主细胞内建立复制壁龛。然而,布鲁氏菌T4SS效应物及其功能尚未完全确定。在本研究中,我们通过构建基因缺失和互补菌株,研究了我们在前期研究中发现的新型T4SS效应菌布鲁氏菌RS15060对细菌生物学特性和发病机制的作用。我们发现,缺失rs15060基因削弱了布鲁氏菌在宿主细胞内复制和在小鼠体内建立慢性感染的能力,但增强了在感染早期粘附/入侵HeLa细胞和逃避溶酶体降解的能力。此外,rs15060缺失的布鲁氏菌菌株在细菌形态、细胞壁厚度和对杀菌因子的敏感性方面也发生了显著变化。此外,rs15060缺失菌株显示细菌脂多糖核合成增加,诱导宿主的炎症反应更强。布鲁氏菌rs15060互补菌株恢复了改变后的生物学特性。此外,BLASTP预测和3D结构模拟显示,布鲁氏菌RS15060在结构上含有NAD(P)结合和活性基序,这些基序对于蛋白质发挥NAD依赖性外溶酶/脱水酶活性至关重要。突变了NAD(P)结合基序和/或活性基序的互补菌株并没有恢复突变后的特征,说明布鲁氏菌RS15060是一种潜在的NAD依赖性外聚酶/脱水酶,预测的NAD(P)结合基序和/或活性基序在细菌细胞壁和LPS核心合成中起重要作用,这对维持细菌形态和发挥毒力至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel Brucella T4SS effector RS15060 acts on bacterial morphology, lipopolysaccharide core synthesis and host proinflammatory responses, which is beneficial for Brucella melitensis virulence.

Brucella relies on the type IV secretion system (T4SS) to establish replication niches within host cells. However, the Brucella T4SS effectors and their functions have not been fully identified. In this study, we investigated the function of Brucella RS15060, a novel T4SS effector discovered in our previous study, on the bacterial biological characteristics and pathogenesis by construction of the gene deletion and complementation strains. We found that deletion of the rs15060 gene weakened abilities of Brucella to replicate within host cells and establish chronic infection in mice but enhanced abilities to adhere/invade HeLa cells and evade lysosomal degradation in the early stage of infection. In addition, the rs15060 deletion Brucella strain showed significant changes in bacterial shape, cell wall thickness, and sensitivity to bactericidal factors. Furthermore, the rs15060 deletion strain showed an increased synthesis of bacterial lipopolysaccharide core and induced a stronger host's inflammatory response. The Brucella rs15060 complementation strain restored the altered biological characteristics. Moreover, BLASTP prediction and 3D structure simulation revealed that the Brucella RS15060 contains NAD(P)-binding and active motifs in structure, which are important for proteins to exert NAD dependent epimerase/dehydratase activity. The complementation strain with mutation on NAD(P)-binding and/or active motifs of RS15060 did not restore the altered characteristics, suggesting that the Brucella RS15060 is a potential NAD dependent epimerase/dehydratase, and the predicted NAD(P)-binding and/or active motifs play an important role on bacterial cell wall and LPS core synthesis, which is crucial for maintaining bacterial morphology and exerting virulence.

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来源期刊
Microbiological research
Microbiological research 生物-微生物学
CiteScore
10.90
自引率
6.00%
发文量
249
审稿时长
29 days
期刊介绍: Microbiological Research is devoted to publishing reports on prokaryotic and eukaryotic microorganisms such as yeasts, fungi, bacteria, archaea, and protozoa. Research on interactions between pathogenic microorganisms and their environment or hosts are also covered.
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