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苯酚和间甲酚在胰岛素六聚体中的相互作用及其对B28脯氨酸→天冬氨酸胰岛素类似物缔合特性的影响。

Interactions of phenol and m-cresol in the insulin hexamer, and their effect on the association properties of B28 pro --> Asp insulin analogues.

作者信息

Whittingham J L, Edwards D J, Antson A A, Clarkson J M, Dodson G G

机构信息

Department of Chemistry, University of York, Heslington, England.

出版信息

Biochemistry. 1998 Aug 18;37(33):11516-23. doi: 10.1021/bi980807s.

Abstract

Insulin's natural tendency to form dimers and hexamers is significantly reduced in a mutant insulin B28 Pro --> Asp, which has been designed as a monomeric, rapid-acting hormone for therapeutic purposes. This molecule can be induced to form zinc hexamers in the presence of small phenolic derivatives which are routinely used as antimicrobial agents in insulin preparations. Two structures of B28 Asp insulin have been determined from crystals grown in the presence of phenol and m-cresol. In these crystals, insulin exists as R6 zinc hexamers containing a number of phenol or m-cresol molecules associated with aromatic side chains at the dimer-dimer interfaces. At the monomer-monomer interfaces, the B28 Pro --> Asp mutation leads to increased conformational flexibility in the B chain C termini, resulting in the loss of important intermolecular van der Waals contacts, thus explaining the monomeric character of B28 Asp insulin. The structure of a cross-linked derivative of B28 Asp insulin, containing an Ala-Lys dipeptide linker between residues B30 Ala and A1 Gly, has also determined. This forms an R6 zinc hexamer containing several m-cresol molecules. Of particular interest in this structure are two m-cresol molecules whose binding disrupted the beta-strand in one of the dimers. This observation suggests that the cross-link introduces mechanical strain on the B chain C terminus, thereby weakening the monomer-monomer interactions.

摘要

在突变胰岛素B28脯氨酸突变为天冬氨酸(B28 Pro→Asp)的情况下,胰岛素形成二聚体和六聚体的自然倾向显著降低,该突变胰岛素已被设计为用于治疗目的的单体速效激素。在胰岛素制剂中通常用作抗菌剂的小酚类衍生物存在下,该分子可被诱导形成锌六聚体。已从在苯酚和间甲酚存在下生长的晶体中确定了B28天冬氨酸胰岛素的两种结构。在这些晶体中,胰岛素以R6锌六聚体形式存在,其中包含一些与二聚体-二聚体界面处的芳香族侧链相关的苯酚或间甲酚分子。在单体-单体界面处,B28脯氨酸突变为天冬氨酸导致B链C末端的构象灵活性增加,导致重要的分子间范德华接触丧失,从而解释了B28天冬氨酸胰岛素的单体特性。还确定了B28天冬氨酸胰岛素的交联衍生物的结构,该衍生物在残基B30丙氨酸和A1甘氨酸之间含有一个丙氨酸-赖氨酸二肽接头。这形成了一个包含几个间甲酚分子的R6锌六聚体。在该结构中特别有趣的是两个间甲酚分子,它们的结合破坏了其中一个二聚体中的β链。这一观察结果表明,交联在B链C末端引入了机械应变,从而削弱了单体-单体相互作用。

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