Hassiepen U, Federwisch M, Mülders T, Wollmer A
Institut für Biochemie, Rheinisch-Westfälische Technische Hochschule Aachen, 52057 Aachen, Germany.
Biophys J. 1999 Sep;77(3):1638-54. doi: 10.1016/S0006-3495(99)77012-8.
The kinetic stability of insulin hexamers containing two metal ions was investigated by means of hybridization experiments. Insulin was covalently labeled at the N(epsilon)-amino group of Lys(B29) by a fluorescence donor and acceptor group, respectively. The labels neither affect the tertiary structure nor interfere with self-association. Equimolar solutions of pure donor and acceptor insulin hexamers were mixed, and the hybridization was monitored by fluorescence resonance energy transfer. With the total insulin concentration remaining constant and the association/dissociation equilibria unperturbed, the subunit interchange between hexamers is an entropy-driven relaxation process that ends at statistical distribution of the labels over 16 types of hexamers differing by their composition. The analytical description of the interchange kinetics on the basis of a plausible model has yielded the first experimental values for the lifetime of the hexamers. The lifetime is reciprocal to the product of the concentration of the exchanged species and the interchange rate constant: tau = 1/(c. k). Measured for different concentrations, temperatures, metal ions, and ligand-dependent conformational states, the lifetime was found to cover a range from minutes for T(6) to days for R(6) hexamers. The approach can be used under an unlimited variety of conditions. The information it provides is of obvious relevance for the handling, storage, and pharmacokinetic properties of insulin preparations.
通过杂交实验研究了含有两个金属离子的胰岛素六聚体的动力学稳定性。胰岛素分别通过荧光供体和受体基团在赖氨酸(B29)的N(ε)-氨基上进行共价标记。这些标记既不影响三级结构,也不干扰自聚集。将纯供体和受体胰岛素六聚体的等摩尔溶液混合,并通过荧光共振能量转移监测杂交过程。在总胰岛素浓度保持恒定且缔合/解离平衡不受干扰的情况下,六聚体之间的亚基交换是一个熵驱动的弛豫过程,最终以标记物在16种组成不同的六聚体上的统计分布结束。基于一个合理模型对交换动力学的分析描述得出了六聚体寿命的首个实验值。寿命与交换物种的浓度和交换速率常数的乘积成反比:τ = 1/(c·k)。在不同浓度、温度、金属离子和配体依赖性构象状态下进行测量,发现六聚体的寿命范围从T(6)的几分钟到R(6)的几天不等。该方法可在无限多种条件下使用。它提供的信息对于胰岛素制剂的处理、储存和药代动力学性质显然具有相关性。