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Effect of Tamm-Horsfall urinary glycoprotein on phagocytosis and killing of type I-fimbriated Escherichia coli.

机译:Tamm-Horsfall尿糖蛋白对I型纤维化大肠杆菌的吞噬作用和杀伤力的影响。

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摘要

Human polymorphonuclear leukocytes (PMN) ingest type I (mannose sensitive) fimbriated Escherichia coli even in the absence of antibody, complement, or other serum opsonins. Our studies suggest that the Tamm-Horsfall urinary glycoprotein (THP) interferes with serum-independent ingestion. Electron micrographs showed that dissolved THP adhered to type I fimbriae and formed a pseudocapsule around bacteria bearing type I fimbriae. Phase-variant bacteria grown on blood agar neither expressed fimbriae nor bound THP. Affinity column chromatography demonstrated mannose-sensitive binding between purified type I fimbriae and purified THP. The ability of human PMN to bind and ingest type I-fimbriated E. coli was diminished if the bacteria had been coated by exposure to THP at physiologic concentrations. At 1 h, PMN were associated with an average of 2.62 uncoated bacteria, but with only 0.18 coated bacteria (P less than 0.001). alpha-Methyl mannoside blocked the observed effect of THP on binding and phagocytosis in a dose-dependent fashion: increased mannoside led to increased blocking. PMN preincubated with THP were able to bind and phagocytose normally. There did not appear to be any significant clumping of bacteria in suspension to account for these effects. Bactericidal assays with leukocytes in suspension demonstrated protection of THP-coated bacteria. At 1 h, PMN killed 42% of noncoated E. coli (a decrease of 0.24 log), but the number of THP-coated bacteria increased by 75% (an increase of 0.24 log). These observations may partially explain the virulence of E. coli in the bladder and kidney, where serum activity is low and THP is abundant.
机译:即使没有抗体,补体或其他血清调理素,人多形核白细胞(PMN)也会摄取I型(对甘露糖敏感)的大肠杆菌。我们的研究表明,Tamm-Horsfall尿糖蛋白(THP)会干扰血清非依赖性摄入。电子显微照片显示,溶解的THP附着在I型菌毛上,并在带有I型菌毛的细菌周围形成假胶囊。在血琼脂上生长的相变细菌既不表达菌毛也不结合THP。亲和柱色谱显示纯化的I型菌毛和纯化的THP之间有甘露糖敏感的结合。如果细菌已通过以生理浓度暴露于THP进行包被,则人类PMN结合和摄取I型纤维化大肠杆菌的能力将降低。在1小时时,PMN与平均2.62个未包被细菌相关,但仅与0.18个包被细菌相关(P小于0.001)。 α-甲基甘露糖苷以剂量依赖的方式阻断了THP对结合和吞噬作用的影响:甘露糖苷增加导致阻断作用增加。与THP预孵育的PMN能够正常结合并吞噬。悬浮液中似乎没有任何明显的细菌团块可以解释这些影响。用悬浮液中的白细胞进行的杀菌试验证明了THP包被细菌的保护作用。 1小时后,PMN杀死了42%的未覆盖大肠杆菌(减少了0.24 log),但是THP覆盖细菌的数量增加了75%(增加0.24 log)。这些观察结果可能部分解释了大肠杆菌在膀胱和肾脏中的毒力,那里的血清活性低而THP丰富。

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