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链脲佐菌素诱导的糖尿病大鼠肾小球壁中凝集素结合位点的超微结构分布

Ultrastructural distribution of lectin-binding sites in the glomerular wall of streptozotocin-induced diabetic rats.

作者信息

Bendayan M, Benhamou N, Desjardins M

机构信息

Department of Anatomy, University of Montreal, Québec, Canada.

出版信息

J Submicrosc Cytol Pathol. 1990 Apr;22(2):173-84.

PMID:1692509
Abstract

Since carbohydrates-containing molecules are known to be preferentially altered in diabetes mellitus and that major functional and morphological alterations do occur during diabetes in the renal tissue, we revealed in the present study various lectin-binding sites in the glomerular wall of control and long-term diabetic animals. Lectin-binding sites specific to N-acetyl-galactosamine, N-acetyl-glucosamine, sialic acid, galactose and fucose were revealed using the appropriate lectin and the lectin-gold complex at the electron microscope level. Differences in intensity of labeling as well as in distribution were detected for several lectin-binding sites particularly in the glomerular basement membrane, reflecting the presence of additional glycoconjugates and changes in the molecular organization of the basement membrane components during diabetes. Alterations in the glycocomponents and the glycoproteins of the glomerular basement membrane as well as non-enzymatic glycosylation of the basement membrane components have been described in diabetes, going along with our present results. The alteration in the distribution of some lectin-binding sites gives support to modifications in the three dimensional organization of some glycoproteins which could occur in diabetes. Since the glomerular wall is actively involved in blood filtration, these changes may either induce, or result from, the loss in selective permeability and the massive proteinuria occurring during diabetes.

摘要

由于已知含碳水化合物的分子在糖尿病中会优先发生改变,并且在糖尿病期间肾组织确实会出现主要的功能和形态学改变,因此我们在本研究中揭示了对照动物和长期糖尿病动物肾小球壁中的各种凝集素结合位点。在电子显微镜水平上,使用适当的凝集素和凝集素-金复合物揭示了对N-乙酰半乳糖胺、N-乙酰葡糖胺、唾液酸、半乳糖和岩藻糖具有特异性的凝集素结合位点。在几个凝集素结合位点,特别是在肾小球基底膜中,检测到标记强度和分布的差异,这反映了糖尿病期间额外糖缀合物的存在以及基底膜成分分子组织的变化。糖尿病中已经描述了肾小球基底膜糖成分和糖蛋白的改变以及基底膜成分的非酶糖基化,这与我们目前的结果一致。一些凝集素结合位点分布的改变支持了糖尿病中可能发生的一些糖蛋白三维结构的改变。由于肾小球壁积极参与血液过滤,这些变化可能会引发糖尿病期间选择性通透性的丧失和大量蛋白尿,或者是其结果。

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