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奇异变形杆菌鞭毛和MR/P菌毛:实验性尿路感染后的分离、纯化、N端分析及血清抗体反应

Proteus mirabilis flagella and MR/P fimbriae: isolation, purification, N-terminal analysis, and serum antibody response following experimental urinary tract infection.

作者信息

Bahrani F K, Johnson D E, Robbins D, Mobley H L

机构信息

Department of Medicine, University of Maryland, School of Medicine, Baltimore 21201.

出版信息

Infect Immun. 1991 Oct;59(10):3574-80. doi: 10.1128/iai.59.10.3574-3580.1991.

Abstract

Urinary tract infection with Proteus mirabilis may lead to serious complications, including cystitis, acute pyelonephritis, fever, bacteremia, and death. In addition to the production of hemolysin and the enzyme urease, fimbriae and flagellum-mediated motility have been postulated as virulence factors for this species. We purified mannose-resistant/proteuslike (MR/P) fimbriae and flagella from strains CFT322 and HU2450, respectively. Electron microscopy revealed highly concentrated preparations of fimbriae and flagella. Fimbrial and flagellar structural subunits were estimated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis to be 18.5 and 41 kDa, respectively. N-terminal sequencing revealed that 10 of the first 20 amino acids of the major MR/P subunit matched the sequence of the P. mirabilis uroepithelial cell adhesin N terminus and 11 of 20 amino acids matched the predicted amino acid sequence of the Escherichia coli P fimbriae structural subunit, PapA. In addition, 90 and 80% homologies were found between the first 20 amino acids of P. mirabilis flagellin and those of Salmonella typhimurium phase-1 flagellin and the E. coli hag gene product, respectively. An enzyme-linked immunosorbent assay using purified antigens showed a strong reaction between the MR/P fimbriae or flagella and sera of CBA mice challenged transurethrally with P. mirabilis. A possible role for MR/P fimbriae in the pathogenesis of urinary tract infection is supported by (i) a strong immune response to the antigen in experimentally infected animals, (ii) amino acid sequence similarity to other enteric surface structure, and (iii) our previously reported observation that MR/P fimbriae are expressed preferentially as the sole fimbrial type in human pyelonephritis isolates.

摘要

奇异变形杆菌引起的尿路感染可能导致严重并发症,包括膀胱炎、急性肾盂肾炎、发热、菌血症和死亡。除了产生溶血素和脲酶外,菌毛和鞭毛介导的运动性也被认为是该菌的毒力因子。我们分别从菌株CFT322和HU2450中纯化出甘露糖抗性/变形杆菌样(MR/P)菌毛和鞭毛。电子显微镜显示菌毛和鞭毛制剂高度浓缩。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳估计菌毛和鞭毛结构亚基分别为18.5 kDa和41 kDa。N端测序显示,主要MR/P亚基的前20个氨基酸中有10个与奇异变形杆菌尿上皮细胞粘附素N端序列匹配,20个氨基酸中有11个与大肠杆菌P菌毛结构亚基PapA的预测氨基酸序列匹配。此外,奇异变形杆菌鞭毛蛋白的前20个氨基酸与鼠伤寒沙门氏菌1期鞭毛蛋白以及大肠杆菌hag基因产物的前20个氨基酸之间分别有90%和80%的同源性。使用纯化抗原进行的酶联免疫吸附试验表明,MR/P菌毛或鞭毛与经尿道用奇异变形杆菌攻击的CBA小鼠血清之间有强烈反应。(i)实验感染动物对抗原产生强烈免疫反应,(ii)与其他肠道表面结构的氨基酸序列相似性,以及(iii)我们先前报道的观察结果,即MR/P菌毛在人类肾盂肾炎分离株中优先作为唯一的菌毛类型表达,这些都支持了MR/P菌毛在尿路感染发病机制中可能起的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3ef/258923/1411d268a13c/iai00046-0244-a.jpg

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