Kim Y, Ohlrogge J B, Prestegard J H
Chemistry Department, Yale University, New Haven, CT 06511.
Biochem Pharmacol. 1990 Jul 1;40(1):7-13. doi: 10.1016/0006-2952(90)90171-g.
Proteins in solution need not exist in a single rigid structure but can exist in a dynamic equilibrium among structural forms. The problems that this poses for structure determination using nuclear Overhauser effect data from two-dimensional NMR experiments are discussed and illustrated with data on functionally equivalent proteins from two different species. One of these proteins, acyl carrier protein from Escherichia coli, shows a single set of resonances, easily interpreted on the basis of a single rigid structure. However, the related protein, acyl carrier protein from spinach, shows two sets of resonances, suggesting that two conformers in dynamic equilibrium would be a better structural model.
溶液中的蛋白质不必以单一的刚性结构存在,而是可以在结构形式之间处于动态平衡。本文讨论了利用二维核磁共振实验的核Overhauser效应数据进行结构测定时所面临的问题,并以来自两个不同物种的功能等效蛋白质的数据进行了说明。其中一种蛋白质,即大肠杆菌的酰基载体蛋白,显示出一组单一的共振峰,基于单一的刚性结构很容易解释。然而,相关的蛋白质,即菠菜的酰基载体蛋白,显示出两组共振峰,这表明动态平衡中的两种构象异构体可能是更好的结构模型。