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Lactoferrin-binding proteins in Shigella flexneri.

机译:弗氏志贺氏菌中的乳铁蛋白结合蛋白。

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摘要

The ability of Shigella flexneri to interact with lactoferrin (Lf) was examined with a 125I-labeled protein-binding assay. The percent binding of human lactoferrin (HLf) and bovine lactoferrin (BLf) to 45 S. flexneri strains was 19 +/- 3 and 21 +/- 3 (mean +/- standard error of the mean), respectively. 125I-labeled HLf and BLf binding to strain M90T reached an equilibrium within 2 h. Unlabeled HLf and BLf displaced the 125I-HLf-bacteria interaction in a dose-dependent manner. The Lf-bacterium complex was uncoupled by KSCN or urea, but not by NaCl. The interaction was specific, and approximately 4,800 HLf binding sites (affinity constant [Ka], 690 nM) or approximately 5,700 BLf binding sites (Ka, 104 nM) per cell were estimated in strain M90T by a Scatchard plot analysis. The native cell envelope (CE) and outer membrane (OM) did not reveal Lf-binding components in sodium dodecyl sulfate-polyacrylamide gel electrophoresis. However, after being boiled, the CE and OM preparations showed three distinct horseradish peroxidase-Lf reactive bands of about 39, 22, and 16 kDa. The 39-kDa component was also reactive to a monoclonal antibody specific for porin (PoI) proteins of members of the family Enterobacteriaceae. The Lf-binding protein pattern was similar with BLf or HLf, for Crb+ and Crb- strains. The protein-Lf complex was dissociable by KSCN or urea and was stable after treatment with NaCl. Variation (loss) in the O chain of lipopolysaccharide (LPS) markedly enhanced the Lf-binding capacity in the isogenic rough strain SFL1070-15 compared with its smooth parent strain, SFL1070. These data establish that Lf binds to specific components in the bacterial OM; the heat-modifiable, anti-PoI-reactive, and LPS-associated properties suggested that the Lf-binding proteins are porins in S. flexneri.
机译:用125 I标记的蛋白质结合测定法检查了弗氏志贺氏菌与乳铁蛋白(Lf)相互作用的能力。人乳铁蛋白(HLf)和牛乳铁蛋白(BLf)与45株弗氏链球菌菌株的结合百分比分别为19 +/- 3和21 +/- 3(平均值的平均值+/-标准误差)。 125 I标记的HLf和BLf与菌株M90T的结合在2小时内达到平衡。未标记的HLf和BLf以剂量依赖的方式置换了125I-HLf-细菌的相互作用。 Lf-细菌复合物未通过KSCN或尿素偶联,但未通过NaCl偶联。相互作用是特异性的,并且通过Scatchard图分析估计了菌株M90T中每个细胞大约4,800个HLf结合位点(亲和常数[Ka],690 nM)或大约5,700个BLf结合位点(Ka,104 nM)。天然细胞包膜(CE)和外膜(OM)没有显示十二烷基硫酸钠-聚丙烯酰胺凝胶电泳中的Lf结合成分。然而,煮沸后,CE和OM制剂显示出三个截然不同的辣根过氧化物酶-Lf反应带,分别约为39、22和16 kDa。 39 kDa的成分还对肠杆菌科成员的孔蛋白(PoI)蛋白具有特异性的单克隆抗体具有反应性。对于Crb +和Crb-菌株,Lf结合蛋白的模式与BLf或HLf相似。蛋白-Lf复合物可被KSCN或尿素解离,并在用NaCl处理后稳定。脂多糖(LPS)的O链变化(丢失)与同质粗糙菌株SFL1070相比,明显增强了同基因粗糙菌株SFL1070-15的Lf结合能力。这些数据证明Lf与细菌OM中的特定成分结合。热可修饰,抗PoI反应性和LPS相关的特性表明,Lf结合蛋白是弗氏链球菌中的孔蛋白。

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