Pouttu R, Puustinen T, Virkola R, Hacker J, Klemm P, Korhonen T K
Department of Biosciences, Helsinki University, Finland.
Mol Microbiol. 1999 Mar;31(6):1747-57. doi: 10.1046/j.1365-2958.1999.01311.x.
Adhesion of meningitis-associated Escherichia coli O18acK1H7 to collagens was characterized. The E. coli strain IHE 3034 adhered to type IV and type I collagens but not to type III collagen immobilized on glass. Collagens lack terminal mannosyl units, yet the bacterial adhesion was completely abolished in the presence of alpha-methyl-D-mannoside. A cat cassette was introduced into the filmA gene of IHE 3034, and the resulting mutant strain IHE 3034-2 failed to adhere to collagens. In contrast, insertion of a Gm cassette into the sfaA gene of IHE 3034, encoding the S-fimbrillin, had no significant effect on the adhesiveness. The fim cluster from IHE 3034 was cloned and expressed in trans in the fimA::cat mutant strain IHE 3034-2. The complemented strain IHE 3034-2(pRPO-1) exhibited adhesiveness to type IV and type I collagens, confirming the function of the type 1 fimbria in the adhesion. We have previously shown that the type 1 fimbria from E. coli K-12 strain PC31 does not confer bacterial adhesiveness to collagens. The fimH genes from E. coli IHE 3034 as well as from PC31 were expressed in the fimH-null strain MS4. The FimH from IHE 3034 potentiated collagen adherence, whereas the FimH from PC31 was inactive. Sequence comparison of fimH from IHE 3034 and PC31 revealed five amino-acid differences in the predicted mature FimH proteins: at residues 27, 62, 70, 78 and 201. Each of these residues in the IHE 3034-FimH were individually substituted to the corresponding amino acid in the PC31-FimH. The substitution S62-->A completely abolished collagen adhesiveness. The reverse substitution A62-->S in the PC31-FimH as well as in the FimH from another E. coli strain induced collagen adhesiveness to the level seen with IHE 3034-FimH. Out of nine fimH genes analysed from isolates of E. coli, collagen adhesiveness as well as alanine at position 62 in FimH were found only in two O18acK1H7 isolates with the isoenzyme profile ET type 1. Our results demonstrate that the amino-acid residue Ala-62 in the FimH lectin is critical for the adhesion to collagens by a highly virulent clonal group of E. coli.
对脑膜炎相关大肠杆菌O18acK1H7与胶原蛋白的黏附特性进行了表征。大肠杆菌菌株IHE 3034能黏附于IV型和I型胶原蛋白,但不能黏附固定在玻璃上的III型胶原蛋白。胶原蛋白缺乏末端甘露糖基单元,但在α-甲基-D-甘露糖苷存在时,细菌黏附完全被消除。将一个卡那霉素盒式结构引入IHE 3034的filmA基因,得到的突变菌株IHE 3034 - 2不能黏附于胶原蛋白。相反,将一个庆大霉素盒式结构插入IHE 3034编码S-菌毛蛋白的sfaA基因,对黏附性没有显著影响。从IHE 3034克隆出菌毛簇并在filmA::cat突变菌株IHE 3034 - 2中进行反式表达。互补菌株IHE 3034 - 2(pRPO - 1)对IV型和I型胶原蛋白表现出黏附性,证实了1型菌毛在黏附中的作用。我们之前已经表明,大肠杆菌K - 12菌株PC31的1型菌毛不能赋予细菌对胶原蛋白的黏附性。将大肠杆菌IHE 3034以及PC31的fimH基因在fimH缺失菌株MS4中表达。IHE 3034的FimH增强了对胶原蛋白的黏附,而PC31的FimH没有活性。对IHE 3034和PC31的fimH进行序列比较,发现在预测的成熟FimH蛋白中有五个氨基酸差异:位于第27、62、70、78和201位残基。IHE 3034 - FimH中的这些残基分别被替换为PC31 - FimH中的相应氨基酸。S62→A替换完全消除了对胶原蛋白的黏附性。在PC31 - FimH以及另一个大肠杆菌菌株的FimH中A62→S的反向替换诱导了对胶原蛋白的黏附性,达到IHE 3034 - FimH所见的水平。在从大肠杆菌分离株分析的九个fimH基因中,仅在两个具有ET 1型同工酶谱的O18acK1H7分离株中发现了对胶原蛋白的黏附性以及FimH中第62位的丙氨酸。我们的结果表明,FimH凝集素中的氨基酸残基Ala - 62对于一组高毒力大肠杆菌克隆群对胶原蛋白的黏附至关重要。