Clarke J, Fersht A R
Centre for Protein Engineering, MRC Centre, Cambridge, UK.
Fold Des. 1996;1(4):243-54. doi: 10.1016/S1359-0278(96)00038-7.
Methods have been developed recently for probing local fluctuations of protein structure using H/2H-exchange of amide protons at equilibrium. It has been suggested that equilibrium exchange methods can identify the order of events in folding pathways and detect folding cores. We have applied the procedure of measuring the effects of denaturant on the H/2H-exchange of amide protons of barnase, the folding pathway of which is well established.
The addition of relatively low concentrations of denaturant causes the mechanism of exchange of amide protons of barnase to change from EX2 to EX1 for the residues that require global unfolding for exchange to occur. This change of mechanism, which would have been missed by some of the standard tests, causes artefacts that could be easily misinterpreted. We also present the thermodynamic argument that measurements at equilibrium cannot give the order of events in folding.
Measurement of H/2H-exchange of amide protons at equilibrium, when applied correctly, is an excellent method for analyzing the equilibrium distribution of unfolded and partly folded states. It cannot, in theory and in practice, be used for determining protein folding pathways by itself.
最近已开发出利用平衡态下酰胺质子的H/2H交换来探测蛋白质结构局部波动的方法。有人提出,平衡交换方法可以确定折叠途径中事件的顺序并检测折叠核心。我们已应用测量变性剂对核糖核酸酶酰胺质子H/2H交换影响的程序,其折叠途径已得到充分确立。
对于那些需要全局展开才能发生交换的残基,添加相对低浓度的变性剂会导致核糖核酸酶酰胺质子的交换机制从EX2转变为EX1。这种机制变化会产生一些可能被一些标准测试忽略的假象,并且容易被误解。我们还提出了热力学观点,即平衡态下的测量无法给出折叠过程中事件的顺序。
正确应用时,平衡态下酰胺质子的H/2H交换测量是分析未折叠和部分折叠状态平衡分布的出色方法。理论上和实践中,它本身都不能用于确定蛋白质折叠途径。