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溶藻弧菌双精氨酸转运系统的功能特征:其在生物膜形成、细胞外蛋白酶活性和对鱼类的毒力方面的作用。

Functional characterization of Vibrio alginolyticus twin-arginine translocation system: its roles in biofilm formation, extracellular protease activity, and virulence towards fish.

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, People's Republic of China.

出版信息

Curr Microbiol. 2011 Apr;62(4):1193-9. doi: 10.1007/s00284-010-9844-6. Epub 2010 Dec 18.

Abstract

The bacterial twin-arginine translocation (Tat) system contributes to translocate folded proteins and plays pleiotropic roles in growth, motility, and the secretion of some virulent factors. In this study, the authors identified the Tat gene cluster in fish pathogen Vibrio alginolyticus and explored its roles in pathogenesis toward fish. Vibrio alginolyticus Tat mutants showed growth deficiency in TMAO medium, while the complement strain restored the ability to grow in the medium, demonstrating the conservative function of the Tat system in translocation of redox enzymes or cofactors in this bacterium. In V. alginolyticus, deletion of the tatABC genes led to a drastic decrease in biofilm biogenesis. Interestingly, the secretion of extracellular protease Asp, an established exotoxin of the bacterium, was significantly decreased in the TatC mutant, suggesting that TatC might play a part in the production of virulence factors in the bacterium. Furthermore, the Tat mutants displayed attenuated virulence toward the fish model and EPC cells. These findings suggest that the Tat secretion related to the extracellular protease activity as well as virulence in V. alginolyticus provided new insights into the pathogenesis of vibriosis in fish.

摘要

细菌双精氨酸转运(Tat)系统有助于折叠蛋白的转运,并在生长、运动和一些毒力因子的分泌中发挥多种作用。在这项研究中,作者鉴定了鱼类病原体弧菌中的 Tat 基因簇,并探讨了其在鱼类发病机制中的作用。弧菌 Tat 突变体在 TMAO 培养基中生长不良,而互补菌株恢复了在该培养基中生长的能力,表明 Tat 系统在该细菌中氧化还原酶或辅因子的转运中具有保守功能。在弧菌中,tatABC 基因的缺失导致生物膜生成急剧减少。有趣的是,胞外蛋白酶 Asp 的分泌(该菌的一种已建立的外毒素)在 TatC 突变体中显著减少,表明 TatC 可能在该菌毒力因子的产生中发挥作用。此外,Tat 突变体对鱼类模型和 EPC 细胞的毒力减弱。这些发现表明,Tat 与细胞外蛋白酶活性以及弧菌的毒力相关的分泌为鱼类弧菌病的发病机制提供了新的见解。

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