首页> 外文OA文献 >Molecular identity and cellular distribution of advanced glycation endproduct receptors: relationship of p60 to OST-48 and p90 to 80K-H membrane proteins.
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Molecular identity and cellular distribution of advanced glycation endproduct receptors: relationship of p60 to OST-48 and p90 to 80K-H membrane proteins.

机译:晚期糖基化终产物受体的分子同一性和细胞分布:p60与OST-48和p90与80K-H膜蛋白的关系。

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摘要

Advanced glycation endproducts (AGEs) are derivatives of nonenzymatic reactions between sugars and protein or lipids, and together with AGE-specific receptors are involved in numerous pathogenic processes associated with aging and hyperglycemia. Two of the known AGE-binding proteins isolated from rat liver membranes, p60 and p90, have been partially sequenced. We now report that the N-terminal sequence of p60 exhibits 95% identity to OST-48, a 48-kDa member of the oligosaccharyltransferase complex found in microsomal membranes, while sequence analysis of p90 revealed 73% and 85% identity to the N-terminal and internal sequences, respectively, of human 80K-H, a 80- to 87-kDa protein substrate for protein kinase C. AGE-ligand and Western analyses of purified oligosaccharyltransferase complex, enriched rough endoplasmic reticulum, smooth endoplasmic reticulum, and plasma membranes from rat liver or RAW 264.7 macrophages yielded a single protein of approximately 50 kDa recognized by both anti-p60 and anti-OST-48 antibodies, and also exhibited AGE-specific binding. Immunoprecipitated OST-48 from rat rough endoplasmic reticulum fractions exhibited both AGE binding and immunoreactivity to an anti-p60 antibody. Immune IgG raised to recombinant OST-48 and 80K-H inhibited binding of AGE-bovine serum albumin to cell membranes in a dose-dependent manner. Immunostaining and flow cytometry demonstrated the surface expression of OST-48 and 80K-H on numerous cell types and tissues, including mononuclear, endothelial, renal, and brain neuronal and glial cells. We conclude that the AGE receptor components p60 and p90 are identical to OST-48, and 80K-H, respectively, and that they together contribute to the processing of AGEs from extra- and intracellular compartments and in the cellular responses associated with these pathogenic substances.
机译:晚期糖基化终产物(AGEs)是糖与蛋白质或脂质之间非酶促反应的衍生物,并且与AGE特异性受体一起参与了许多与衰老和高血糖症相关的致病过程。从大鼠肝膜分离出的两种已知的AGE结合蛋白p60和p90已进行了部分测序。现在,我们报道p60的N末端序列与OST-48(在微粒体膜中发现的寡糖基转移酶复合物的48 kDa成员)具有95%的同一性,而对p90的序列分析显示与N-的73%和85%相同人80K-H的末端和内部序列,分别是蛋白激酶C的80-87kDa的蛋白质底物.AGE-配体和蛋白质分析,包括纯化的寡糖基转移酶复合物,富集的粗糙内质网,平滑内质网和质膜来自大鼠肝脏或RAW 264.7巨噬细胞的蛋白产生了约50 kDa的单一蛋白,被抗p60和抗OST-48抗体均识别,并且还表现出AGE特异性结合。来自大鼠粗糙内质网部分的免疫沉淀OST-48对抗p60抗体显示AGE结合和免疫反应性。产生重组OST-48和80K-H的免疫IgG以剂量依赖性方式抑制AGE-牛血清白蛋白与细胞膜的结合。免疫染色和流式细胞仪证明OST-48和80K-H在许多细胞类型和组织(包括单核,内皮,肾和脑神经元和神经胶质细胞)上的表面表达。我们得出的结论是,AGE受体组分p60和p90分别与OST-48和80K-H相同,并且它们共同有助于细胞外和细胞内区室的AGEs处理以及与这些致病物质相关的细胞反应。

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