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糖尿病环境通过诱导或上调半乳糖凝集素-3的表达来调节系膜中的晚期糖基化终末产物受体复合物。

The diabetic milieu modulates the advanced glycation end product-receptor complex in the mesangium by inducing or upregulating galectin-3 expression.

作者信息

Pugliese G, Pricci F, Leto G, Amadio L, Iacobini C, Romeo G, Lenti L, Sale P, Gradini R, Liu F T, Di Mario U

机构信息

Department of Clinical Sciences, La Sapienza University, Rome, Italy.

出版信息

Diabetes. 2000 Jul;49(7):1249-57. doi: 10.2337/diabetes.49.7.1249.

Abstract

Nonenzymatic glycation has been implicated in the pathogenesis of the dysregulated tissue remodeling that characterizes diabetic glomerulopathy, via the formation of advanced glycation end products (AGEs) and their binding to cell surface receptors. Several AGE-binding proteins have been identified so far, including p60, p90, and the adhesive and growth-regulating lectin galectin-3 (Gal-3), the components of the so-called AGE-receptor complex. This study aimed to evaluate the mesangial expression of the AGE-receptor complex and its modulation by the diabetic milieu, both in vivo, in non-diabetic versus streptozotocin-induced diabetic rats, and in vitro, in mesangial cells exposed to either normal glucose (NG) levels (5.5 mmol/l), as compared with high glucose (HG) levels (30 mmol/l) and iso-osmolar mannitol (M), or to native bovine serum albumin (BSA), as compared with glycated BSA with AGE formation (BSA-AGE) and glycated BSA in which AGE formation was prevented by aminoguanidine (BSA-AM). In vivo, Gal-3 protein and mRNA were not detectable in glomeruli from nondiabetic rats until 12 months after initiating the study. On the contrary, in diabetic rats, Gal-3 expression was observed at 2 months of disease duration, and it increased thereafter. Both p60 and p90 immunoreactivities were observed at the glomerular level with slightly increased expression of p90, but not p60, in diabetic versus nondiabetic animals. In vitro, Gal-3 was not detectable in mesangial cells cultured in NG (although it became evident after a certain number of passages in culture), whereas Gal-3 was detectable in cells grown on BSA. Prolonged exposure (2-4 weeks) of mesangial cells to HG but not to M, as well as growing cells on BSA-AGE and, to a lesser extent, BSA-AM, induced or significantly increased the expression of Gal-3, both protein (up to 2.65-fold) and mRNA (up to 3.10-fold) and its secretion in the medium (by approximately 50%). Both p60 and p90 were demonstrated in mesangial cells under NG conditions, and the expression of p90, but not p60, was upregulated by approximately 20% by HG or BSA-AGE. These results indicate that 1) under basal conditions, Gal-3, unlike p90 and p60, is not detectable in the mesangium but becomes expressed with aging and 2) the diabetic milieu induces or upregulates Gal-3 production, whereas it increases only slightly the expression of p90, but not p60. Gal-3 expression or overexpression may modulate the AGE-receptor-mediated events by modifying the function of the AGE-receptor complex. Additionally, it may exert direct effects on tissue remodeling by virtue of its adhesive and growth-regulating properties.

摘要

非酶糖基化通过晚期糖基化终末产物(AGEs)的形成及其与细胞表面受体的结合,参与了糖尿病肾小球病特征性的组织重塑失调的发病机制。目前已鉴定出几种AGE结合蛋白,包括p60、p90以及具有黏附与生长调节作用的凝集素半乳糖凝集素-3(Gal-3),它们构成了所谓的AGE受体复合物。本研究旨在评估AGE受体复合物在系膜中的表达及其在糖尿病环境中的调节情况,包括在体内非糖尿病大鼠与链脲佐菌素诱导的糖尿病大鼠中的情况,以及在体外系膜细胞中的情况,系膜细胞分别暴露于正常葡萄糖(NG)水平(5.5 mmol/l)、高葡萄糖(HG)水平(30 mmol/l)和等渗甘露醇(M),或分别暴露于天然牛血清白蛋白(BSA)、形成AGE的糖化牛血清白蛋白(BSA-AGE)以及用氨基胍阻止AGE形成的糖化牛血清白蛋白(BSA-AM)。在体内,在研究开始后12个月内,非糖尿病大鼠肾小球中未检测到Gal-3蛋白和mRNA。相反,在糖尿病大鼠中,疾病持续2个月时观察到Gal-3表达,此后其表达增加。在肾小球水平观察到p60和p90的免疫反应性,与非糖尿病动物相比,糖尿病动物中p90的表达略有增加,但p60没有。在体外,在NG中培养的系膜细胞中未检测到Gal-3(尽管在培养一定代数后变得明显),而在BSA上生长的细胞中可检测到Gal-3。系膜细胞长时间暴露(2 - 4周)于HG而非M,以及在BSA-AGE上生长,在较小程度上在BSA-AM上生长,均可诱导或显著增加Gal-3的表达,包括蛋白表达(高达2.65倍)和mRNA表达(高达3.10倍)及其在培养基中的分泌(约50%)。在NG条件下,系膜细胞中可检测到p60和p90,HG或BSA-AGE使p90的表达上调约20%,但p60没有。这些结果表明:1)在基础条件下,与p90和p60不同,系膜中未检测到Gal-3,但随着年龄增长会表达;2)糖尿病环境诱导或上调Gal-3的产生,而仅轻微增加p90的表达,不增加p60的表达。Gal-3的表达或过表达可能通过改变AGE受体复合物的功能来调节AGE受体介导的事件。此外,由于其黏附与生长调节特性,它可能对组织重塑产生直接影响。

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