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胰岛素六聚体的变构转变受同促相互作用和异促相互作用的调节。

The allosteric transition of the insulin hexamer is modulated by homotropic and heterotropic interactions.

作者信息

Choi W E, Brader M L, Aguilar V, Kaarsholm N C, Dunn M F

机构信息

Department of Biochemistry-015, University of California, Riverside 92521-0129.

出版信息

Biochemistry. 1993 Nov 2;32(43):11638-45. doi: 10.1021/bi00094a021.

DOI:10.1021/bi00094a021
PMID:8218231
Abstract

The allosteric behavior of the Co(II)-substituted insulin hexamer has been investigated using electronic spectroscopy to study the binding of different phenolic analogues and singly charged anions to effector sites on the protein. This work presents the first detailed, quantitative analysis of the ligand-induced T- to R-state allosteric transition of the insulin hexamer. Recent studies have established that there are two ligand binding processes which stabilize the R-state conformation of the Co(II)-substituted hexamer: the binding of cyclic organic molecules to the six protein pockets present in the Zn(II)-R6 insulin hexamer [Derewenda, U., Derewenda, Z., Dodson, E. J., Dodson, G. G., Reynolds, C. D., Smith, G. D., Sparks, C., & Swensen, D. (1989) Nature 338, 594-596] and the coordination of singly charged anions to the His(B10) metal sites [Brader, M.L., Kaarsholm, N.C., Lee, W.K., & Dunn, M.F. (1991) Biochemistry 30, 6636-6645]. The R6 insulin hexamer is stabilized by heterotropic interactions between the hydrophobic protein pockets and the coordination sites of the His(B10)-bound metal ions. The binding studies with 4-hydroxybenzamide, m-cresol, resorcinol, and phenol presented herein show that, in the absence of inorganic anions, the 4-hydroxybenzamide-induced transition, with a Hill number of 2.8, is the most cooperative, followed by m-cresol, phenol, and resorcinol with Hill numbers of 1.8, 1.4, and 1.2, respectively. The relative effectiveness of these ligands in shifting the allosteric equilibrium in favor of the Co(II)-R6 hexamer was found to be resorcinol > phenol > 4-hydroxybenzamide > m-cresol.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用电子光谱研究了钴(II)取代的胰岛素六聚体的变构行为,以研究不同酚类类似物和单电荷阴离子与蛋白质效应位点的结合。这项工作首次对胰岛素六聚体的配体诱导的T态到R态变构转变进行了详细的定量分析。最近的研究表明,有两个配体结合过程可稳定钴(II)取代的六聚体的R态构象:环状有机分子与锌(II)-R6胰岛素六聚体中存在的六个蛋白质口袋的结合[德鲁温达,U.,德鲁温达,Z.,多德森,E.J.,多德森,G.G.,雷诺兹,C.D.,史密斯,G.D.,斯帕克斯,C.,&斯文森,D.(1989年)《自然》338,594 - 596]以及单电荷阴离子与His(B10)金属位点的配位[布拉德,M.L.,卡尔绍尔姆,N.C.,李,W.K.,&邓恩,M.F.(1991年)《生物化学》30,6636 - 6645]。R6胰岛素六聚体通过疏水蛋白质口袋与His(B10)结合的金属离子的配位位点之间的异质相互作用而稳定。本文给出的与4 - 羟基苯甲酰胺、间甲酚、间苯二酚和苯酚的结合研究表明,在没有无机阴离子的情况下,4 - 羟基苯甲酰胺诱导的转变,其希尔系数为2.8,是最协同的,其次是间甲酚、苯酚和间苯二酚,希尔系数分别为1.8、1.4和1.2。发现这些配体在使变构平衡向有利于钴(II)-R6六聚体方向移动方面的相对有效性为间苯二酚>苯酚>4 - 羟基苯甲酰胺>间甲酚。(摘要截断于250字)

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