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1
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Microbiol Rev. 1989 Dec;53(4):517-30. doi: 10.1128/mr.53.4.517-530.1989.
2
Chromosome-mediated iron uptake system in pathogenic strains of Vibrio anguillarum.鳗弧菌致病菌株中的染色体介导的铁摄取系统。
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Increased production of the siderophore anguibactin mediated by pJM1-like plasmids in Vibrio anguillarum.鳗弧菌中由类pJM1质粒介导的铁载体anguibactin产量增加。
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4
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Siderophores of bacteria and fungi.细菌和真菌的铁载体
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7
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8
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Transferrins and heme-compounds as iron sources for pathogenic bacteria.转铁蛋白和血红素化合物作为病原菌的铁源。
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细菌中铁载体介导的铁转运的遗传学与分子生物学

Genetics and molecular biology of siderophore-mediated iron transport in bacteria.

作者信息

Crosa J H

出版信息

Microbiol Rev. 1989 Dec;53(4):517-30. doi: 10.1128/mr.53.4.517-530.1989.

DOI:10.1128/mr.53.4.517-530.1989
PMID:2531838
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC372751/
Abstract

The possession of specialized iron transport systems may be crucial for bacteria to override the iron limitation imposed by the host or the environment. One of the most commonly found strategies evolved by microorganisms is the production of siderophores, low-molecular-weight iron chelators that have very high constants of association for their complexes with iron. Thus, siderophores act as extracellular solubilizing agents for iron from minerals or organic compounds, such as transferrin and lactoferrin in the host vertebrate, under conditions of iron limitation. Transport of iron into the cell cytosol is mediated by specific membrane receptor and transport systems which recognize the iron-siderophore complexes. In this review I have analyzed in detail three siderophore-mediated iron uptake systems: the plasmid-encoded anguibactin system of Vibrio anguillarum, the aerobactin-mediated iron assimilation system present in the pColV-K30 plasmid and in the chromosomes of many enteric bacteria, and the chromosomally encoded enterobactin iron uptake system, found in Escherichia coli, Shigella spp., Salmonella spp., and other members of the family Enterobacteriaceae. The siderophore systems encoded by Pseudomonas aeruginosa, namely, pyochelin and pyoverdin, as well as the siderophore amonabactin, specified by Aeromonas hydrophila, are also discussed. The potential role of siderophore-mediated systems as virulence determinants in the specific host-bacteria interaction leading to disease is also analyzed with respect to the influence of these systems in the expression of other factors, such as toxins, in the bacterial virulence repertoire.

摘要

拥有专门的铁转运系统对于细菌克服宿主或环境施加的铁限制可能至关重要。微生物进化出的最常见策略之一是产生铁载体,即低分子量的铁螯合剂,它们与铁形成的复合物具有非常高的缔合常数。因此,在铁限制条件下,铁载体可作为细胞外增溶剂,从矿物质或有机化合物(如宿主脊椎动物中的转铁蛋白和乳铁蛋白)中溶解铁。铁进入细胞质溶胶是由特定的膜受体和转运系统介导的,这些系统能够识别铁-铁载体复合物。在这篇综述中,我详细分析了三种铁载体介导的铁摄取系统:鳗弧菌的质粒编码的 anguibactin 系统、存在于 pColV-K30 质粒和许多肠道细菌染色体中的气杆菌素介导的铁同化系统,以及在大肠杆菌、志贺氏菌属、沙门氏菌属和肠杆菌科其他成员中发现的染色体编码的肠杆菌素铁摄取系统。还讨论了铜绿假单胞菌编码的铁载体系统,即绿脓菌素和绿脓杆菌素,以及嗜水气单胞菌指定的铁载体氨那巴菌素。关于这些系统对细菌毒力库中其他因素(如毒素)表达的影响,还分析了铁载体介导的系统在导致疾病的特定宿主-细菌相互作用中作为毒力决定因素的潜在作用。