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新型共价连接胰岛素二聚体工程改造用于研究胰岛素二聚化的功能。

Novel covalently linked insulin dimer engineered to investigate the function of insulin dimerization.

机构信息

Diabetes Research Unit, Novo Nordisk A/S, Novo Nordisk Park, Måløv, Denmark.

出版信息

PLoS One. 2012;7(2):e30882. doi: 10.1371/journal.pone.0030882. Epub 2012 Feb 17.

Abstract

An ingenious system evolved to facilitate insulin binding to the insulin receptor as a monomer and at the same time ensure sufficient stability of insulin during storage. Insulin dimer is the cornerstone of this system. Insulin dimer is relatively weak, which ensures dissociation into monomers in the circulation, and it is stabilized by hexamer formation in the presence of zinc ions during storage in the pancreatic β-cell. Due to the transient nature of insulin dimer, direct investigation of this important form is inherently difficult. To address the relationship between insulin oligomerization and insulin stability and function, we engineered a covalently linked insulin dimer in which two monomers were linked by a disulfide bond. The structure of this covalent dimer was identical to the self-association dimer of human insulin. Importantly, this covalent dimer was capable of further oligomerization to form the structural equivalent of the classical hexamer. The covalently linked dimer neither bound to the insulin receptor, nor induced a metabolic response in vitro. However, it was extremely thermodynamically stable and did not form amyloid fibrils when subjected to mechanical stress, underlining the importance of oligomerization for insulin stability.

摘要

一个巧妙的系统进化而来,以促进胰岛素作为单体与胰岛素受体结合,同时确保胰岛素在储存过程中的足够稳定性。胰岛素二聚体是该系统的基石。胰岛素二聚体相对较弱,这确保了在循环中解离为单体,并且在储存于胰腺β细胞中存在锌离子时通过六聚体形成而稳定。由于胰岛素二聚体的瞬时性质,直接研究这种重要形式本质上具有难度。为了解决胰岛素寡聚化与胰岛素稳定性和功能之间的关系,我们设计了一种通过二硫键连接的共价连接的胰岛素二聚体,其中两个单体通过二硫键连接。这种共价二聚体的结构与人类胰岛素的自缔合二聚体相同。重要的是,这种共价二聚体能够进一步寡聚化,形成经典六聚体的结构等价物。共价连接的二聚体既不与胰岛素受体结合,也不在体外引起代谢反应。然而,它具有极高的热力学稳定性,并且在受到机械应力时不会形成淀粉样纤维,这强调了寡聚化对于胰岛素稳定性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16ac/3281904/b6ceaf89b6b7/pone.0030882.g001.jpg

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