Bacterial Siderophores: Structure, Functions, and Role in the Pathogenesis of Infections

Q3 Medicine
D. A. Kuznetsova, V. Rykova, O. Podladchikova
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Abstract

This review systematizes and analyzes the data published over the past decade, devoted to the study of low-molecular-weight high affinity iron chelators – siderophores. Siderophores, which are found in bacteria, fungi and mammals, are able to extract iron from insoluble inorganic compounds, and in the host organism – from complexes with proteins that perform the function of nonspecific protection of mammals from infections. The extracted iron is delivered to cells through surface protein receptors specific for each siderophore, as well as various protein transport systems that make up membranes. Siderophores play an important role in virulence in pathogenic bacteria, performing many functions in the host organism, in addition to providing microbes with iron and other biological metals. They participate in the storage of excess iron, toxic to cells, protect bacteria from reactive oxygen compounds, compete for iron with phagocytes, and have a harmful effect on host cells, acting as secreted bacterial toxin in some cases. Bacterial siderophores perform a signaling function and regulate both, their own synthesis and the synthesis of other virulence factors. Many pathogenic bacteria produce several siderophores that are active under different conditions, against various sources of iron in the host organism and at different stages of infectious process. The review presents the results of the experimental studies aimed at elucidating the structure and diverse functions of bacterial siderophores, the mechanisms of their biosynthesis and regulation of expression, as well as the role of these molecules in the physiology and virulence of pathogenic bacteria. Special emphasis is put on siderophores of bacteria causing particularly dangerous infections.
细菌侧生孢子的结构、功能及其在感染发病机制中的作用
这篇综述系统化并分析了过去十年中发表的数据,这些数据致力于低分子量高亲和力铁螯合剂——铁载体的研究。在细菌、真菌和哺乳动物中发现的Siderophores能够从不溶性无机化合物中提取铁,并在宿主体内从与蛋白质的复合物中提取铁。蛋白质具有非特异性保护哺乳动物免受感染的功能。提取的铁通过每个铁载体特有的表面蛋白质受体以及构成膜的各种蛋白质转运系统输送到细胞。除了为微生物提供铁和其他生物金属外,侧生菌在病原菌的毒力中发挥着重要作用,在宿主生物中发挥着许多功能。它们参与储存多余的铁,对细胞有毒,保护细菌免受活性氧化合物的侵害,与吞噬细胞争夺铁,并对宿主细胞产生有害影响,在某些情况下充当分泌的细菌毒素。细菌铁载体发挥信号传导功能,调节自身合成和其他毒力因子的合成。许多病原菌产生几种铁载体,这些铁载体在不同条件下对宿主体内的各种铁源具有活性,并处于感染过程的不同阶段。本文综述了实验研究的结果,旨在阐明细菌铁载体的结构和多种功能,它们的生物合成和表达调控机制,以及这些分子在致病菌生理学和毒力中的作用。特别强调引起特别危险感染的细菌的铁载体。
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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来源期刊
Problemy Osobo Opasnykh Infektsii
Problemy Osobo Opasnykh Infektsii Medicine-Infectious Diseases
CiteScore
1.90
自引率
0.00%
发文量
79
审稿时长
12 weeks
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