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从大肠杆菌周质中纯化的1型菌毛新生FimH亚基对中性粒细胞的激活作用。

Neutrophil activation by nascent FimH subunits of type 1 fimbriae purified from the periplasm of Escherichia coli.

作者信息

Tewari R, MacGregor J I, Ikeda T, Little J R, Hultgren S J, Abraham S N

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 1993 Feb 5;268(4):3009-15.

PMID:8094080
Abstract

Previous studies of type 1 fimbriae of Escherichia coli have implicated FimH, a minor subunit, as the determinant of its mannose binding property. Structure-function analysis of FimH has not been possible because of the difficulty in obtaining adequate amounts of the subunit from type 1 fimbriae. We have obtained nascent FimH that has not been incorporated into the fimbrial structure from the periplasm of an E. coli strain expressing the cloned fimH gene. Nascently translocated FimH was initially degraded in the periplasm; however, when co-expressed with FimC, a putative fimbrial chaperone, the FimH molecules were stabilized and readily isolated from the periplasmic extract by fractionation on a sodium dodecyl sulfate-polyacrylamide gel followed by electroelution of the FimH band from the gel. The eluted protein was purified to homogeneity by affinity chromatography on a mannose-Sepharose column. Purified FimH displayed the same mannose-inhibitable binding to human neutrophils as type 1 fimbriated bacteria, including triggering an oxidative burst with concomitant release of reactive oxygen metabolites. In addition, inert microspheres coated with FimH, but not those coated with bovine serum albumin, were phagocytosed by neutrophils. These data provide direct evidence that FimH is the determinant on type 1 fimbriae which is responsible for mediating mannose-specific adherence and that isolated FimH is a potent activator of human neutrophils.

摘要

先前对大肠杆菌1型菌毛的研究表明,次要亚基FimH是其甘露糖结合特性的决定因素。由于难以从1型菌毛中获得足够量的该亚基,因此无法对FimH进行结构功能分析。我们从表达克隆的fimH基因的大肠杆菌菌株的周质中获得了尚未整合到菌毛结构中的新生FimH。新生转运的FimH最初在周质中被降解;然而,当与假定的菌毛伴侣FimC共表达时,FimH分子得以稳定,并通过在十二烷基硫酸钠-聚丙烯酰胺凝胶上分级分离,随后从凝胶中电洗脱FimH条带,从而易于从周质提取物中分离出来。通过在甘露糖-琼脂糖柱上进行亲和层析,将洗脱的蛋白质纯化至同质。纯化的FimH与1型菌毛化细菌一样,对人中性粒细胞表现出相同的甘露糖抑制性结合,包括引发氧化爆发并伴随活性氧代谢产物的释放。此外,涂有FimH的惰性微球可被中性粒细胞吞噬,而涂有牛血清白蛋白的微球则不能。这些数据提供了直接证据,表明FimH是1型菌毛上负责介导甘露糖特异性黏附的决定因素,并且分离出的FimH是人类中性粒细胞的有效激活剂。

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