Knegtel R M, Boelens R, Ganadu M L, Kaptein R
Department of Chemistry, University of Utrecht, The Netherlands.
Eur J Biochem. 1991 Dec 5;202(2):447-58. doi: 10.1111/j.1432-1033.1991.tb16394.x.
The solution conformation of des-(B26-B30)-insulin (DPI) has been investigated by 1H-NMR spectroscopy. A set of 250 approximate interproton distance restraints, derived from two-dimensional nuclear Overhauser enhancement spectra, were used as the basis of a structure determination using distance geometry (DG) and distance-bound driven dynamics (DDD). Sixteen DG structures were optimized using energy minimization (EM) and submitted to short 5-ps restrained molecular dynamics (RMD) simulations. A further refinement of the DDD structure with the lowest distance errors was done by energy minimization, a prolonged RMD simulation in vacuo and a time-averaged RMD simulation. An average structure was obtained from a trajectory generated during 20-ps RMD. The final structure was compared with the des-(B26-B30)-insulin crystal structure refined by molecular dynamics and the 2-Zn crystal structure of porcine insulin. This comparison shows that the overall structure of des-(B26-B30)-insulin is retained in solution with respect to the crystal structures with a high flexibility at the N-terminal part of the A chain and at the N-terminal and C-terminal parts of the B chain. In the RMD run a high mobility of Gly A1, Asn A21 and of the side chain of Phe B25 is noticed. One of the conformations adopted by des-(B26-B30)-insulin in solution is similar to that of molecule 1 (Chinese nomenclature) in the crystal structure of porcine insulin.
已通过¹H-NMR光谱法研究了去(B26-B30)胰岛素(DPI)的溶液构象。从二维核Overhauser增强光谱得出的一组250个近似质子间距离限制,被用作使用距离几何(DG)和距离约束驱动动力学(DDD)进行结构测定的基础。使用能量最小化(EM)对16个DG结构进行了优化,并进行了短时间的5皮秒受限分子动力学(RMD)模拟。通过能量最小化、在真空中进行长时间的RMD模拟以及时间平均RMD模拟,对距离误差最低的DDD结构进行了进一步优化。从20皮秒RMD过程中生成的轨迹获得了平均结构。将最终结构与通过分子动力学优化的去(B26-B30)胰岛素晶体结构以及猪胰岛素的2-Zn晶体结构进行了比较。该比较表明,去(B26-B30)胰岛素的整体结构在溶液中相对于晶体结构得以保留,在A链的N端部分以及B链的N端和C端部分具有较高的灵活性。在RMD运行中,注意到Gly A1、Asn A21和Phe B25侧链具有较高的流动性。去(B26-B30)胰岛素在溶液中采用的一种构象与猪胰岛素晶体结构中分子1(中国命名法)的构象相似。