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大鼠红细胞系祖细胞晶状体的促红细胞生成素受体。特性与亲和交联。

The erythropoietin receptor of rat erythroid progenitor lens. Characterization and affinity cross-linkage.

作者信息

Mayeux P, Billat C, Jacquot R

机构信息

Laboratoire de Physiologie Animale, Faculte des Sciences, Reims, France.

出版信息

J Biol Chem. 1987 Oct 15;262(29):13985-90.

PMID:2820989
Abstract

Commercially available 125I-labeled erythropoietin, obtained by genetic engineering from a human gene, was used to characterize receptors for this hormone on the cell surface of rat erythroid progenitor cells. A low number of high affinity binding sites (487 +/- 32 sites/cell, Kd = 167 +/- 14 pm) were found. Nonerythroid cells and erythrocytes did not exhibit specific binding. The high affinity binding was reversible and displaced by unlabeled erythropoietin, but not by other hormones and growth factors. After incubation at 37 degrees C, nearly 35% of the specifically bound erythropoietin seemed to be internalized, as judged by resistance to acidic buffer treatment. Thus, binding showed characteristics of a hormone-receptor association. 125I-Erythropoietin-labeled cells were treated with the bifunctional reagent dissucinimidyl suberate. Analysis of the cellular extracts by polyacrylamide gel electrophoresis under denaturing and reducing conditions revealed that erythropoietin can be cross-linked to two molecules of 94 and 78 kDa, respectively. Both labeled bands disappeared when the cells were labeled in the presence of an excess of unlabeled erythropoietin. Under nonreducing conditions, a cross-linked band of 230-255 kDa was observed. The relationships between these bands are discussed.

摘要

通过基因工程从人类基因中获得的市售125I标记的促红细胞生成素,被用于鉴定大鼠红系祖细胞表面这种激素的受体。发现了少量高亲和力结合位点(487±32个位点/细胞,解离常数Kd = 167±14皮摩尔)。非红系细胞和红细胞未表现出特异性结合。高亲和力结合是可逆的,可被未标记的促红细胞生成素取代,但不能被其他激素和生长因子取代。在37℃孵育后,根据对酸性缓冲液处理的抗性判断,近35%特异性结合的促红细胞生成素似乎被内化。因此,结合表现出激素-受体结合的特征。用双功能试剂琥珀酰亚胺基辛二酸酯处理125I-促红细胞生成素标记的细胞。在变性和还原条件下通过聚丙烯酰胺凝胶电泳分析细胞提取物表明,促红细胞生成素可分别与两个94 kDa和78 kDa的分子交联。当细胞在过量未标记促红细胞生成素存在下进行标记时,两条标记带均消失。在非还原条件下,观察到一条230 - 255 kDa的交联带。讨论了这些条带之间的关系。

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