Pathogenesis of Proteus mirabilis Infection.

Q1 Medicine EcoSal Plus Pub Date : 2018-02-01 DOI:10.1128/ecosalplus.ESP-0009-2017
Chelsie E Armbruster, Harry L T Mobley, Melanie M Pearson
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Abstract

Proteus mirabilis, a Gram-negative rod-shaped bacterium most noted for its swarming motility and urease activity, frequently causes catheter-associated urinary tract infections (CAUTIs) that are often polymicrobial. These infections may be accompanied by urolithiasis, the development of bladder or kidney stones due to alkalinization of urine from urease-catalyzed urea hydrolysis. Adherence of the bacterium to epithelial and catheter surfaces is mediated by 17 different fimbriae, most notably MR/P fimbriae. Repressors of motility are often encoded by these fimbrial operons. Motility is mediated by flagella encoded on a single contiguous 54-kb chromosomal sequence. On agar plates, P. mirabilis undergoes a morphological conversion to a filamentous swarmer cell expressing hundreds of flagella. When swarms from different strains meet, a line of demarcation, a "Dienes line," develops due to the killing action of each strain's type VI secretion system. During infection, histological damage is caused by cytotoxins including hemolysin and a variety of proteases, some autotransported. The pathogenesis of infection, including assessment of individual genes or global screens for virulence or fitness factors has been assessed in murine models of ascending urinary tract infections or CAUTIs using both single-species and polymicrobial models. Global gene expression studies performed in culture and in the murine model have revealed the unique metabolism of this bacterium. Vaccines, using MR/P fimbria and its adhesin, MrpH, have been shown to be efficacious in the murine model. A comprehensive review of factors associated with urinary tract infection is presented, encompassing both historical perspectives and current advances.

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奇异变形杆菌感染的发病机制。
奇异变形杆菌(Proteus mirabilis)是一种革兰氏阴性杆状细菌,以其成群的运动性和尿素酶活性而著称,经常引起导尿管相关性尿路感染(CAUTI),而且通常是多微生物感染。这些感染可能伴有尿石症,即尿素酶催化尿素水解使尿液碱化而形成膀胱或肾结石。细菌在上皮和导管表面的附着是由 17 种不同的缘膜介导的,其中最主要的是 MR/P 缘膜。运动抑制因子通常由这些缘膜操作子编码。运动性是由单个连续的 54 kb 染色体序列上编码的鞭毛介导的。在琼脂平板上,奇异变形虫的形态会转变为表达数百根鞭毛的丝状沼泽细胞。当来自不同菌株的菌群相遇时,由于各菌株的 VI 型分泌系统的杀伤作用,会形成一条分界线,即 "狄尼斯线"。在感染过程中,细胞毒素(包括溶血素和多种蛋白酶,其中一些是自体转运的)会造成组织学损伤。在小鼠升泌尿道感染或 CAUTIs 模型中,使用单种和多微生物模型对感染的发病机制进行了评估,包括评估单个基因或全面筛选毒力或适应性因素。在培养和小鼠模型中进行的全基因表达研究揭示了这种细菌独特的新陈代谢。在小鼠模型中,使用 MR/P fimbria 及其粘附蛋白 MrpH 的疫苗已被证明具有疗效。本文对尿路感染的相关因素进行了全面回顾,包括历史观点和当前进展。
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来源期刊
EcoSal Plus
EcoSal Plus Immunology and Microbiology-Microbiology
CiteScore
12.20
自引率
0.00%
发文量
4
期刊介绍: EcoSal Plus is the authoritative online review journal that publishes an ever-growing body of expert reviews covering virtually all aspects of E. coli, Salmonella, and other members of the family Enterobacteriaceae and their use as model microbes for biological explorations. This journal is intended primarily for the research community as a comprehensive and continuously updated archive of the entire corpus of knowledge about the enteric bacterial cell. Thoughtful reviews focus on physiology, metabolism, genetics, pathogenesis, ecology, genomics, systems biology, and history E. coli and its relatives. These provide the integrated background needed for most microbiology investigations and are essential reading for research scientists. Articles contain links to E. coli K12 genes on the EcoCyc database site and are available as downloadable PDF files. Images and tables are downloadable to PowerPoint files.
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