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胰岛素刺激大鼠肝脏细胞表面其受体的α亚基发生蛋白水解,但不刺激β亚基。

Insulin stimulates proteolysis of the alpha-subunit, but not the beta-subunit, of its receptor at the cell surface in rat liver.

作者信息

Lipson K E, Kolhatkar A A, Donner D B

机构信息

Memorial Sloan-Kettering Cancer Center, New York, NY 10021.

出版信息

Biochem J. 1989 Jul 15;261(2):333-40. doi: 10.1042/bj2610333.

Abstract

Insulin receptors in rat liver plasma membranes contain two alpha- and two beta-subunits held together by interchain disulphide bonds ([alpha beta]2 receptors). Affinity-labelled receptors were digested with chymotrypsin or elastase and then exposed to dithiothreitol before solubilization from membranes and SDS/polyacrylamide-gel electrophoresis. This resulted in partial reduction and isolation of Mr-225,000 alpha beta, Mr-200,000 alpha 1 beta, Mr-165,000 alpha beta 1 and Mr-145,000 alpha 1 beta 1 receptor halves containing intact (alpha, beta) or degraded (alpha 1, beta 1) subunits. The ability to identify half-receptor complexes containing intact or degraded subunits made it possible to assay each subunit simultaneously for insulin-induced proteolysis in isolated plasma membranes or during perfusion of rat liver in situ with insulin. In liver membranes, insulin binding increased the fraction of receptors containing degraded alpha-subunits to about one-third of the total population during 2 h of incubation at 23 degrees C. beta-Subunit proteolysis increased only minimally during this time. Plasma membranes isolated from livers perfused with insulin at 37 degrees C contained degraded alpha-subunits but only intact beta-subunits, showing that insulin induced cell-surface proteolysis of the binding, but not the kinase, domain of its receptor. Since previous observations [Lipson, Kolhatkar & Donner (1988) J. Biol. Chem 263, 10495-10501] have shown that receptors containing degraded alpha-subunits are internalized but do not recycle, it is possible that cell-surface degradation may play a role in the regulation of insulin-receptor number in hepatic tissue. Proteolysis of the beta-subunit is not a likely mechanism by which receptor-kinase activity may be attenuated under physiological conditions.

摘要

大鼠肝细胞膜中的胰岛素受体包含通过链间二硫键连接在一起的两个α亚基和两个β亚基([αβ]2受体)。亲和标记的受体用胰凝乳蛋白酶或弹性蛋白酶消化,然后在从膜上溶解和进行SDS/聚丙烯酰胺凝胶电泳之前用二硫苏糖醇处理。这导致了Mr-225,000αβ、Mr-200,000α1β、Mr-165,000αβ1和Mr-145,000α1β1受体半体的部分还原和分离,这些受体半体包含完整的(α,β)或降解的(α1,β1)亚基。能够鉴定包含完整或降解亚基的半受体复合物使得可以同时检测每个亚基在分离的质膜中或在大鼠肝脏原位灌注胰岛素期间胰岛素诱导的蛋白水解情况。在肝细胞膜中,在23℃孵育2小时期间,胰岛素结合使含有降解α亚基的受体比例增加到总群体的约三分之一。在此期间,β亚基的蛋白水解仅略有增加。从在37℃用胰岛素灌注的肝脏中分离的质膜含有降解的α亚基但仅含有完整的β亚基,表明胰岛素诱导其受体结合结构域而非激酶结构域的细胞表面蛋白水解。由于先前的观察结果[利普森、科尔哈特卡和唐纳(1988年)《生物化学杂志》263,10495 - 10501]表明含有降解α亚基的受体被内化但不循环,因此细胞表面降解可能在肝组织中胰岛素受体数量的调节中起作用。β亚基的蛋白水解不太可能是在生理条件下受体激酶活性可能被减弱的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3158/1138830/ca4ab5ebf3e2/biochemj00203-0032-a.jpg

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