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微血管细胞上晚期糖基化终产物受体的相互作用发生在富含小窝蛋白的膜结构域内。

Advanced glycation end-product receptor interactions on microvascular cells occur within caveolin-rich membrane domains.

作者信息

Stitt A W, Burke G A, Chen F, McMullen C B, Vlassara H

机构信息

Department of Ophthalmology, The Queen's University of Belfast, Northern Ireland, UK.

出版信息

FASEB J. 2000 Dec;14(15):2390-2. doi: 10.1096/fj.00-0289fje.

Abstract

Advanced glycation end products (AGEs) have an important role in diabetic complications, with many responses mediated through AGE-receptors. The current study has investigated the binding and uptake of AGEs by retinal microvascular endothelium in an attempt to understand the nature of AGE-interaction with receptors on the cell surface. There has been special emphasis placed on the R1, R2, and R3 components of AGE-receptor complex (AGE-RC) and their localization to caveolin-rich membrane domains. Retinal microvascular endothelial cells (RMECs) were exposed to either AGE-modified BSA (AGE-BSA) or native BSA conjugated to colloidal gold (gAGE, gBSA) for various time periods, fixed, and processed for transmission electron microscopy (TEM). Localization of AGE-RC components in caveolae was investigated using confocal microscopy and ultrastructural immunogold labeling. Caveolae were extracted from RMECs using differential Triton X-100 solubility, and Western analysis was conducted to test for caveolae enrichment and the presence of AGE-RC complex components. Ligand blots determined 125I-AGE-BSA binding to caveolae-enriched extracts. Colloidal gold conjugates of AGE-BSA bound to caveolae and were internalized to be trafficked to lysosomal-like compartments. AGE-receptor complex components were significantly enriched within caveolae. The data suggest that AGEs interact with their receptors within caveolae. It is significant that the AGE-R complex localizes to these organelles, because this may have implications for AGE binding, internalization, signal transduction, and the modulation of AGE-receptor-mediated vascular cell dysfunction.

摘要

晚期糖基化终末产物(AGEs)在糖尿病并发症中起重要作用,许多反应是通过AGE受体介导的。当前研究调查了视网膜微血管内皮细胞对AGEs的结合和摄取,以试图了解AGE与细胞表面受体相互作用的本质。特别强调了AGE受体复合物(AGE-RC)的R1、R2和R3成分及其在富含小窝蛋白的膜结构域中的定位。将视网膜微血管内皮细胞(RMECs)暴露于AGE修饰的牛血清白蛋白(AGE-BSA)或与胶体金偶联的天然牛血清白蛋白(gAGE,gBSA)中不同时间段,固定后进行透射电子显微镜(TEM)处理。使用共聚焦显微镜和超微结构免疫金标记研究AGE-RC成分在小窝中的定位。使用不同的Triton X-100溶解度从小窝中提取RMECs,进行蛋白质免疫印迹分析以检测小窝富集情况和AGE-RC复合物成分的存在。配体印迹法测定125I-AGE-BSA与富含小窝提取物的结合。AGE-BSA的胶体金偶联物与小窝结合并被内化,转运至溶酶体样区室。AGE受体复合物成分在小窝中显著富集。数据表明AGEs在小窝内与其受体相互作用。AGE-R复合物定位于这些细胞器具有重要意义,因为这可能对AGE结合、内化、信号转导以及AGE受体介导的血管细胞功能障碍的调节产生影响。

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