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胰岛素受体的亲和力与蛋白水解作用之间的关系。高亲和力受体优先被降解的证据。

Relationship between the affinity and proteolysis of the insulin receptor. Evidence that higher affinity receptors are preferentially degraded.

作者信息

Lipson K E, Yamada K, Kolhatkar A A, Donner D B

出版信息

J Biol Chem. 1986 Aug 15;261(23):10833-8.

PMID:3525554
Abstract

125I-Insulin binding to rat liver plasma membranes initiated two processes that occurred with similar time courses: an increase of receptor affinity for hormone and degradation of the Mr 135,000 alpha subunit of the insulin receptor to a fragment of Mr 120,000. Inhibitors of serine proteinases prevented alpha subunit degradation without affecting the affinity change. This shows that the change of affinity is not produced by receptor proteolysis and that the intact alpha subunit of the insulin receptor can exist as a higher or lower affinity species. Hormone binding was much more rapid than receptor proteolysis and the initial rate of alpha subunit degradation was independent of the concentration of occupied lower affinity receptors. Only persistent hormone binding and the accumulation of higher affinity insulin-receptor complexes led to significant receptor proteolysis. As the incubation time between 125I-insulin and membranes increased, the rate at which hormone dissociated from Mr 135,000 complexes diminished, whereas hormone dissociated from Mr 120,000 complexes slowly after brief or extended incubations. These observations suggest that 125I-insulin binds to membranes to form low affinity complexes that are not substrates for proteolysis. A slow conformational change produces higher affinity hormone-receptor complexes that are selectively degraded. Thus, the conversion between states of affinity may play a role in the regulation of receptor proteolysis and, consequently, insulin action in cells.

摘要

125I标记的胰岛素与大鼠肝细胞膜结合引发了两个具有相似时间进程的过程:受体对激素的亲和力增加以及胰岛素受体135,000分子量的α亚基降解为120,000分子量的片段。丝氨酸蛋白酶抑制剂可阻止α亚基降解,而不影响亲和力变化。这表明亲和力的变化不是由受体蛋白水解产生的,并且胰岛素受体完整的α亚基可以以高亲和力或低亲和力形式存在。激素结合比受体蛋白水解快得多,α亚基降解的初始速率与占据的低亲和力受体浓度无关。只有持续的激素结合和高亲和力胰岛素 - 受体复合物的积累才会导致显著的受体蛋白水解。随着125I标记的胰岛素与细胞膜孵育时间的增加,激素从135,000分子量复合物上解离的速率降低,而在短暂或延长孵育后,激素从120,000分子量复合物上缓慢解离。这些观察结果表明,125I标记的胰岛素与细胞膜结合形成低亲和力复合物,这些复合物不是蛋白水解的底物。缓慢的构象变化产生高亲和力的激素 - 受体复合物,这些复合物被选择性降解。因此,亲和力状态之间的转换可能在受体蛋白水解的调节中起作用,从而在细胞中的胰岛素作用中起作用。

相似文献

1
Relationship between the affinity and proteolysis of the insulin receptor. Evidence that higher affinity receptors are preferentially degraded.胰岛素受体的亲和力与蛋白水解作用之间的关系。高亲和力受体优先被降解的证据。
J Biol Chem. 1986 Aug 15;261(23):10833-8.
2
Cell surface proteolysis and down-regulation of the hepatic insulin receptor. Evidence for selective sorting of intact and degraded receptors after internalization.细胞表面蛋白水解作用与肝胰岛素受体的下调。内化后完整受体与降解受体选择性分选的证据。
J Biol Chem. 1988 Jul 25;263(21):10495-501.
3
Insulin stimulates proteolysis of the alpha-subunit, but not the beta-subunit, of its receptor at the cell surface in rat liver.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。
Biochem J. 1989 Jul 15;261(2):333-40. doi: 10.1042/bj2610333.
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Hormone-induced conformational changes in the hepatic insulin receptor.
J Biol Chem. 1983 Aug 10;258(15):9413-8.
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The subunit structure of the high affinity insulin receptor. Evidence for a disulfide-linked receptor complex in fat cell and liver plasma membranes.高亲和力胰岛素受体的亚基结构。脂肪细胞和肝细胞膜中存在二硫键连接的受体复合物的证据。
J Biol Chem. 1980 Feb 25;255(4):1722-31.
6
The rat liver insulin receptor.大鼠肝脏胰岛素受体。
Biochemistry. 1987 Nov 17;26(23):7384-90. doi: 10.1021/bi00397a028.
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Insulin-induced proteolysis of the insulin receptor alpha-subunit from rat liver does not occur in vivo but is prevented in vitro by blood serum proteinase inhibitors.
Eur J Biochem. 1995 Sep 15;232(3):747-54.
8
Insulin receptors convert to a higher affinity state subsequent to hormone binding. A two-state model for the insulin receptor.胰岛素受体在激素结合后会转变为更高亲和力的状态。胰岛素受体的双态模型。
J Biol Chem. 1982 Jan 10;257(1):104-10.
9
Role of disulfides in the subunit structure of the insulin receptor. Reduction of class I disulfides does not impair transmembrane signalling.二硫键在胰岛素受体亚基结构中的作用。I类二硫键的还原并不损害跨膜信号传导。
J Biol Chem. 1982 Jun 25;257(12):6729-38.
10
[125I]-insulin metabolism by the rat liver in vivo: evidence that a neutral thiol-protease mediates rapid intracellular insulin degradation.大鼠肝脏在体内对[125I]胰岛素的代谢:中性硫醇蛋白酶介导细胞内胰岛素快速降解的证据。
Metabolism. 1990 Mar;39(3):231-41. doi: 10.1016/0026-0495(90)90041-a.

引用本文的文献

1
Insulin stimulates proteolysis of the alpha-subunit, but not the beta-subunit, of its receptor at the cell surface in rat liver.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。
Biochem J. 1989 Jul 15;261(2):333-40. doi: 10.1042/bj2610333.
2
Alkylation, reduction, solubilization and enrichment of binding activity do not impair the ability of insulin receptors to convert from a rapid- into a slow-dissociating state.烷基化、还原、增溶以及结合活性的富集均不会损害胰岛素受体从快速解离状态转变为缓慢解离状态的能力。
Biochem J. 1989 May 1;259(3):871-8. doi: 10.1042/bj2590871.