Ye J, Chang W, Liang D
National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, 15 Datun Road, Chaoyang District, 100101, Beijing, PR China.
Biochim Biophys Acta. 2001 May 5;1547(1):18-25. doi: 10.1016/s0167-4838(01)00160-1.
Destripeptide (B28-B30) insulin (DTRI) is an insulin analogue that has much weaker association ability than native insulin but keeps most of its biological activity. It can be crystallized from a solution containing zinc ions at near-neutral pH. Its crystal structure has been determined by molecular replacement and refined at 1.9 A resolution. DTRI in the crystal exists as a loose hexamer compared with 2Zn insulin. The hexamer only contains one zinc ion that coordinates to the B10 His residues of three monomers. Although residues B28-B30 are located in the monomer-monomer interface within a dimer, the removal of them can simultaneously weaken both the interactions between monomers within the dimer and the interactions between dimers. Because the B-chain C-terminus of insulin is very flexible, we take the DTRI hexamer as a transition state in the native insulin dissociation process and suggest a possible dissociation process of the insulin hexamer based on the DTRI structure.
去条纹肽(B28 - B30)胰岛素(DTRI)是一种胰岛素类似物,其结合能力比天然胰岛素弱得多,但保留了大部分生物活性。它可以在接近中性pH值的含锌离子溶液中结晶。其晶体结构已通过分子置换法确定,并在1.9埃分辨率下进行了精修。与2Zn胰岛素相比,晶体中的DTRI以松散的六聚体形式存在。该六聚体仅包含一个与三个单体的B10组氨酸残基配位的锌离子。尽管B28 - B30残基位于二聚体内单体 - 单体界面处,但去除它们会同时削弱二聚体内单体之间的相互作用以及二聚体之间的相互作用。由于胰岛素的B链C末端非常灵活,我们将DTRI六聚体视为天然胰岛素解离过程中的过渡态,并基于DTRI结构提出了胰岛素六聚体可能的解离过程。