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Lectin histochemical examination of rabbit bladder glycoproteins and characterization of a mucin isolated from the bladder mucosa

机译:兔膀胱糖蛋白的凝集素组织化学检查和从膀胱粘膜分离的粘蛋白的特征

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The glycocalyx of the mucosal surface of urinary bladder acts as an effective barrier against invasion by pathogenic microorganisms and injury from toxic substances in the urine. Defects in these bladder mucosal components could thus be important factors in the development of diseases such as interstitial cystitis and lower urinary tract infections. However, information on the nature of glycoconjugates of mammalian bladder mucosa is very limited. In this study, the glycoconjugates of rabbit bladder were examined histochemically using biotinylated lectins with specificities for a variety of carbohydrate moieties, Three [Artocarpus integrifolia (Jacalin), Datura stramonium (DSL), and Maackia amurensis LT (MAL-II)] of the lectins bound predominantly to the luminal cell layer, with decreased binding to the basal layers of the epithelium. In contrast, Ricinus communis I and Sambucus nigra lectins did not bind to the cells in the epithelium but strongly interacted with the subepithelial layers, especially the lamina propria. The intensity of the staining by Jacalin and MAL-IH was significantly reduced by prior treatment of the bladder sections with O-sialoglycoprotein endopeptidase, indicating that the ligands of these lectins are primarily mucin glycoproteins. In parallel biochemical studies, a high-molecular-weight glycoprotein with characteristics typical of epithelial mucins was purified from the mucosa of rabbit bladder explant cultures metabolically labeled with [H-3]glucosamine, Quantitative analysis of the sialic acid, uronic acid, and hexosamine contents of delipidated rabbit bladder mucosa revealed a larger proportion of sialoglycoproteins compared with glycosaminoglycans. Taken together, the results of histochemical and biochemical analyses indicate that glycoproteins rather than glycosaminoglycans; are the major components of the bladder epithelium, and that the former include a mucin. (C) 2000 Academic Press. [References: 41]
机译:膀胱粘膜表面的糖萼可有效抵抗病原微生物的侵袭和尿液中有毒物质的伤害。因此,这些膀胱粘膜成分的缺陷可能是间质性膀胱炎和下尿路感染等疾病发展的重要因素。但是,关于哺乳动物膀胱粘膜糖缀合物的性质的信息非常有限。在这项研究中,使用生物素化的凝集素对兔碳水化合物的缀合物进行了组织化学检查,所述凝集素对多种碳水化合物部分,三种[Artocarpus integrifolia(Jacalin),Datura stramonium(DSL)和Maackia amurensis LT(MAL-II)]具有特异性。凝集素主要与腔细胞层结合,而与上皮基底层的结合减少。相反,Ricinus communis I和Sambucus nigra凝集素未结合上皮细胞,但与上皮下层特别是固有层强烈相互作用。通过用O-唾液酸糖蛋白内肽酶预先治疗膀胱切片,Jacalin和MAL-1H染色的强度显着降低,表明这些凝集素的配体主要是粘蛋白糖蛋白。在平行的生化研究中,从具有[H-3]葡萄糖胺代谢标记的兔膀胱外植体培养物中的粘膜中纯化出具有上皮黏蛋白典型特征的高分子量糖蛋白,对唾液酸,糖醛酸和己糖胺进行定量分析含量较高的兔膀胱黏膜粘膜糖蛋白比糖胺聚糖的唾液糖蛋白含量高。综合起来,组织化学和生化分析的结果表明糖蛋白而不是糖胺聚糖。是膀胱上皮的主要成分,前者包括粘蛋白。 (C)2000年学术出版社。 [参考:41]

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