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Insulin receptor: Interaction with nonreceptor glycoprotein from liver cell membranes

机译:胰岛素受体:与肝细胞膜非受体糖蛋白的相互作用

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摘要

In crude receptor preparations (either particulate or soluble) of rat liver membranes, the insulin receptor exhibits complicated binding kinetics (two binding plateaus, half-saturated at approximately 60 pM and 700 pM insulin) and an apparent chromatographic heterogeneity, suggested by the presence of two detectable, soluble insulin-binding components with apparent Stokes radii of 72 Å and 38 Å. In contrast, the insulin receptor isolated by affinity chromatography exhibits a simple binding isotherm (half-maximal saturation of binding at 700 pM insulin) without evidence for negative cooperativity and behaves as a single component (apparent Stokes radius of 38 Å) upon chromatography on Sepharose 6B. The apparent discrepancies between the properties of the unpurified insulin receptor and the affinity-purified receptor can be attributed to the presence in crude preparations of a nonreceptor constituent(s) having properties consistent with those of a membrane glycoprotein. A glycoprotein fraction from such crude soluble membrane preparations, freed from insulin receptor and subsequently partially purified using concanavalin-A-agarose, when combined with affinity-purified insulin receptor, causes both a reappearance of the complicated binding kinetics and an increase in the receptor's apparent Stokes radius from 38 Å to 72 Å. Similar results are observed for a glycoprotein fraction obtained from rat adipocyte membranes but are not observed for an identical fraction isolated from human erythrocyte membranes. We conclude that the insulin receptor in rat liver membranes can interact with another nonreceptor membrane glycoprotein that may represent either a nonrecognition moiety of the receptor oligomer or an effector molecule to the biological action of insulin.
机译:在大鼠肝膜的粗制受体制剂(颗粒或可溶)中,胰岛素受体表现出复杂的结合动力学(两个结合平台,在大约60 pM和700 pM胰岛素处半饱和)和明显的色谱异质性,这表明存在两个可检测的可溶性胰岛素结合成分,其斯托克斯半径分别为72Å和38Å。相反,通过亲和色谱分离的胰岛素受体表现出简单的结合等温线(在700 pM胰岛素时结合半饱和最大饱和),没有证据表明存在协同作用,并且在Sepharose色谱上表现为单一成分(表观斯托克斯半径为38Å) 6B。未纯化的胰岛素受体和亲和纯化的受体的性质之间的明显差异可以归因于在粗制品中存在具有与膜糖蛋白的性质一致的性质的非受体成分。来自此类粗制可溶性膜制剂的糖蛋白级分,不含胰岛素受体,随后使用伴刀豆球蛋白-A-琼脂糖部分纯化,当与亲和纯化的胰岛素受体结合使用时,会导致复杂的结合动力学的重新出现和受体表观的增加行程半径从38到72。从大鼠脂肪细胞膜获得的糖蛋白组分观察到相似的结果,但从人红细胞膜分离出的相同组分观察不到相似的结果。我们得出结论,大鼠肝膜中的胰岛素受体可以与另一种非受体膜糖蛋白相互作用,该蛋白可能代表受体低聚物的非识别部分或胰岛素分子的生物学效应分子。

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