首页> 外文期刊>Microbial Pathogenesis >The galactophilic lectin (PA-IL, gene LecA) from Pseudomonas aeruginosa. Its binding requirements and the localization of lectin receptors in various mouse tissues
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The galactophilic lectin (PA-IL, gene LecA) from Pseudomonas aeruginosa. Its binding requirements and the localization of lectin receptors in various mouse tissues

机译:铜绿假单胞菌的半乳凝集素(PA-IL,基因LecA)。它的结合要求和凝集素受体在各种小鼠组织中的定位

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The opportunistic pathogen Pseudomonas aeruginosa contains lectins of which one of them, PA-IL (gene lecA), shows preference for alpha-galactosylated glycans. The bacterial lectin is probably important in the carbohydrate-mediated adhesion of the microorganism to endothelia and epithelia and thereby the lectin facilitates entering and damaging of the cells. The requirements for the interaction between PA-IL and the carbohydrate epitopes to which the bacterial lectin may bind were here studied using alpha-galactosylated neoglycoproteins that were immobilized on Microtiter plates. It is concluded that the carbohydrate recognizing site of the lectin can have a binding requirement of only one saccharide. Lectin histochemistry was performed on sections from wild type mice and from knock-out mice, which lack function of the alpha1,3-galactosyltransferase gene. All assays with the P. aeruginosa lectin were compared with the results obtained using an isolectin from the legume shrub Griffonia simplicifolia: the GSI-B4 isolectin, which is highly specific for glycans terminating in Galalpha1-R. In the wild-type mice, lectin histochemistry showed a strong capillary reaction in heart, kidney and adrenal gland while none of the two lectins were able to detect capillaries in the pancreas. This could indicate a differential glycosylation with respect to endothelial cell Galalpha epitopes among different organs. Further, since no PA-IL binding to the endothelial cells in the KO mouse was observed, it seems that, in the mouse, the Pseudomonas lectin adheres to the Galalpha1-3Galbeta1-4GlcNAc carbohydrate on endothelial cells in most organs and tissues. Finally, lectin staining of the basement membrane of the acini in the exocrine pancreas suggests the presence of Galalpha1-3Gal epitopes in WT mice basement membranes that are not detected by the P. aeruginosa lectin.
机译:机会性病原体铜绿假单胞菌含有凝集素,其中之一是PA-IL(基因lecA),显示出对α-半乳糖基化聚糖的偏好。细菌凝集素在微生物介导的碳水化合物对内皮和上皮的粘附中可能是重要的,因此,凝集素有助于细胞的进入和破坏。使用固定在微量滴定板上的α-半乳糖基化的新糖蛋白,研究了PA-IL与细菌凝集素可能结合的碳水化合物表位之间相互作用的要求。结论是,凝集素的碳水化合物识别位点可以仅具有一种糖的结合需求。在缺乏α1,3-半乳糖基转移酶基因功能的野生型小鼠和基因敲除小鼠的切片上进行凝集素组织化学分析。将铜绿假单胞菌凝集素的所有测定结果与使用从豆科灌木灌木Griffonia simplicifolia的异凝集素获得的结果进行了比较:GSI-B4异凝集素对终止于Galalpha1-R的聚糖具有高度特异性。在野生型小鼠中,凝集素的组织化学显示在心脏,肾脏和肾上腺有强烈的毛细血管反应,而两种凝集素均不能检测出胰腺中的毛细血管。这可能表明在不同器官之间相对于内皮细胞Galalpha表位的糖基化差异。此外,由于在KO小鼠中未观察到PA-IL与内皮细胞的结合,因此在小鼠中,假单胞菌凝集素似乎粘附于大多数器官和组织中内皮细胞上的Galalpha1-3Galbeta1-4GlcNAc碳水化合物。最后,外分泌胰腺的腺泡基底膜的凝集素染色表明,WT小鼠基底膜中存在Galalpha1-3Gal表位,而铜绿假单胞菌凝集素未检测到该表位。

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