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胰岛素及胰岛素降解酶对多催化酶活性的调节

Regulation of multicatalytic enzyme activity by insulin and the insulin-degrading enzyme.

作者信息

Hamel F G, Bennett R G, Duckworth W C

机构信息

Veterans Affairs Medical Center, the Department of Medicine and Pharmacology, University of Nebraska Medical Center, Omaha 68198-3020, USA.

出版信息

Endocrinology. 1998 Oct;139(10):4061-6. doi: 10.1210/endo.139.10.6256.

Abstract

The insulin-degrading enzyme (IDE) plays an important role in the cellular metabolism of insulin. Recent studies have also suggested a regulatory role for this protein in controlling the activity of cytoplasmic protein complexes, including the proteasome [multicatalytic proteinase (MCP)] and the glucocorticoid and androgen receptors. Binding of IDE to these complexes increases their activity, whereas the addition of substrates for IDE inhibits activity. This provides a potential mechanism of action for internalized insulin and other IDE substrates in the control of protein turnover. To examine further the interactions, partially purified IDE-MCP complex was treated with EDTA or EGTA, and activity was measured in the absence and presence of various divalent cations (Ca2+, Mn2+, Co2+, and Zn2+) and insulin. EDTA treatment reduced MCP activity and eliminated the effect of insulin on the complex. Divalent cations partially or completely restored MCP activity, but did not restore the effect of insulin. EGTA treatment had a lesser effect on MCP activity, but abolished insulin inhibition of activity. Divalent cations restored the insulin effect. Inhibitors of IDE also blocked the insulin effect on MCP activity, as did treatment with SDS. These findings suggest that conformational changes in the complex may play a role in the insulin control of MCP activity.

摘要

胰岛素降解酶(IDE)在胰岛素的细胞代谢中发挥着重要作用。最近的研究还表明,该蛋白在控制细胞质蛋白复合物的活性方面具有调节作用,这些复合物包括蛋白酶体[多催化蛋白酶(MCP)]以及糖皮质激素和雄激素受体。IDE与这些复合物的结合会增加它们的活性,而添加IDE的底物则会抑制活性。这为内化胰岛素和其他IDE底物在控制蛋白质周转方面提供了一种潜在的作用机制。为了进一步研究这些相互作用,用EDTA或EGTA处理部分纯化的IDE-MCP复合物,并在不存在和存在各种二价阳离子(Ca2+、Mn2+、Co2+和Zn2+)及胰岛素的情况下测量活性。EDTA处理降低了MCP活性,并消除了胰岛素对该复合物的影响。二价阳离子部分或完全恢复了MCP活性,但未恢复胰岛素的作用效果。EGTA处理对MCP活性的影响较小,但消除了胰岛素对活性的抑制作用。二价阳离子恢复了胰岛素的作用效果。IDE抑制剂也阻断了胰岛素对MCP活性的作用,SDS处理也是如此。这些发现表明,复合物的构象变化可能在胰岛素对MCP活性的控制中起作用。

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