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铁限制条件下迟钝爱德华氏菌的蛋白质组学特征分析表明,与铁氧化还原代谢、铁摄取系统和滑行运动相关的蛋白质上调。

Proteomic characterization of Tenacibaculum dicentrarchi under iron limitation reveals an upregulation of proteins related to iron oxidation and reduction metabolism, iron uptake systems and gliding motility.

机构信息

Universidad Andrés Bello, Laboratorio de Patología de Organismos Acuáticos y Biotecnología Acuícola, Facultad de Ciencias de la Vida, Viña del Mar, Chile.

Interdisciplinary Center for Aquaculture Research (INCAR), Viña del Mar, Chile.

出版信息

J Fish Dis. 2024 Sep;47(9):e13984. doi: 10.1111/jfd.13984. Epub 2024 Jun 29.

Abstract

A strategy for vaccine design involves identifying proteins that could be involved in pathogen-host interactions. The aim of this proteomic study was to determine how iron limitation affects the protein expression of Tenacibaculum dicentrarchi, with a primary focus on virulence factors and proteins associated with iron uptake. The proteomic analysis was carried out using two strains of T. dicentrarchi grown under normal (control) and iron-limited conditions, mimicking the host environment. Our findings revealed differences in the proteins expressed by the type strain CECT 7612 and the Chilean strain TdCh05 of T. dicentrarchi. Nonetheless, both share a common response to iron deprivation, with an increased expression of proteins associated with iron oxidation and reduction metabolism (e.g., SufA, YpmQ, SufD), siderophore transport (e.g., ExbD, TonB-dependent receptor, HbpA), heme compound biosynthesis, and iron transporters under iron limitation. Proteins involved in gliding motility, such as GldL and SprE, were also upregulated in both strains. A negative differential regulation of metabolic proteins, particularly those associated with amino acid biosynthesis, was observed under iron limitation, reflecting the impact of iron availability on bacterial metabolism. Additionally, the TdCh05 strain exhibited unique proteins associated with gliding motility machinery and phage infection control compared to the type strain. These groups of proteins have been identified as virulence factors within the Flavobacteriaceae family, including the genus Tenacibaculum. These results build upon our previous report on iron acquisition mechanisms and could lay the groundwork for future studies aimed at elucidating the role of some of the described proteins in the infectious process of tenacibaculosis, as well as in the development of potential vaccines.

摘要

一种疫苗设计策略涉及鉴定可能参与病原体-宿主相互作用的蛋白质。这项蛋白质组学研究旨在确定铁限制如何影响迟钝爱德华氏菌的蛋白质表达,主要关注毒力因子和与铁摄取相关的蛋白质。蛋白质组学分析使用两种迟钝爱德华氏菌菌株在正常(对照)和缺铁条件下进行,模拟宿主环境。我们的研究结果揭示了迟钝爱德华氏菌的 CECT 7612 型菌株和智利菌株 TdCh05 之间表达的蛋白质存在差异。尽管如此,两者对铁剥夺都有共同的反应,与铁氧化和还原代谢(例如 SufA、YpmQ、SufD)、铁载体转运(例如 ExbD、TonB 依赖性受体、HbpA)、血红素化合物生物合成和铁转运体相关的蛋白质表达增加。在两种菌株中,参与滑行运动的蛋白质,如 GldL 和 SprE,也被上调。在缺铁条件下,观察到代谢蛋白的负差异调节,特别是与氨基酸生物合成相关的蛋白,这反映了铁可用性对细菌代谢的影响。此外,与参考菌株相比,TdCh05 菌株表现出与滑行运动机制和噬菌体感染控制相关的独特蛋白质。这些蛋白质组被鉴定为黄杆菌科家族(包括迟钝爱德华氏菌属)中的毒力因子。这些结果建立在我们之前关于铁获取机制的报告基础上,并为未来的研究奠定了基础,旨在阐明描述的一些蛋白质在迟钝爱德华氏菌病感染过程中的作用,以及在开发潜在疫苗方面的作用。

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