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T6SS 内膜蛋白 DotU 的失活导致嗜水气单胞菌 TH0426 严重减毒和致病性降低。

Inactivation of the T6SS inner membrane protein DotU results in severe attenuation and decreased pathogenicity of Aeromonas veronii TH0426.

机构信息

College of Animal Science and Technology, Jilin Agricultural University, Changchun, Jilin, 130118, China.

出版信息

BMC Microbiol. 2020 Apr 3;20(1):76. doi: 10.1186/s12866-020-01743-5.

Abstract

BACKGROUND

The inner membrane protein DotU of Aeromonas veronii is an important component of the minimal core conserved membrane proteome required for the formation of an envelope-transmembrane complex. This protein functions in a type VI secretion system (T6SS), and the role of this T6SS during the pathogenic process has not been clearly described.

RESULTS

A recombinant A. veronii with a partial disruption of the dotU gene (720 bp of the in-frame sequence) (defined as ∆dotU) was constructed by two conjugate exchanges. We found that the mutant ∆dotU allele can be stably inherited for more than 50 generations. Inactivation of the A. veronii dotU gene resulted in no significant changes in growth or resistance to various environmental changes. However, compared with the wild-type strain colony, the mutant ∆dotU colony had a rough surface morphology. In addition, the biofilm formation ability of the mutant ∆dotU was significantly enhanced by 2.1-fold. Conversely, the deletion of the dotU gene resulted in a significant decrease in pathogenicity and infectivity compared to those of the A. veronii wild-type strain.

CONCLUSIONS

Our findings indicated that the dotU gene was an essential participant in the pathogenicity and invasiveness of A. veronii TH0426, which provides a novel perspective on the pathogenesis of TH0426 and lays the foundation for discovering potential T6SS effectors.

摘要

背景

维氏气单胞菌的内膜蛋白 DotU 是形成包膜跨膜复合物所必需的最小核心保守膜蛋白组的重要组成部分。该蛋白在一种 VI 型分泌系统(T6SS)中发挥作用,但其在致病过程中的作用尚未明确描述。

结果

通过两次共轭交换构建了一个 dotU 基因部分缺失(720bp 框内序列)(定义为 ∆dotU)的重组 A. veronii。我们发现,突变体∆dotU 等位基因可以稳定遗传超过 50 代。A. veronii dotU 基因的失活对生长或对各种环境变化的抗性没有显著变化。然而,与野生型菌株菌落相比,突变体∆dotU 菌落的表面形态粗糙。此外,突变体∆dotU 的生物膜形成能力显著增强了 2.1 倍。相反,与 A. veronii 野生型菌株相比,dotU 基因的缺失导致致病性和感染力显著降低。

结论

我们的研究结果表明,dotU 基因是 A. veronii TH0426 致病性和侵袭性的必需参与者,这为 TH0426 的发病机制提供了新的视角,并为发现潜在的 T6SS 效应器奠定了基础。

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