Fersht Alan R
Cambridge University Chemical Laboratory and Medical Research Council Centre for Protein Engineering, Medical Research Council Centre, Hills Road, Cambridge CB2 2QH, United Kingdom.
Proc Natl Acad Sci U S A. 2004 Oct 5;101(40):14338-42. doi: 10.1073/pnas.0406091101. Epub 2004 Sep 21.
The positions of transition states along reaction coordinates (r++) for simple chemical reactions are often estimated from Leffler alpha values, the slope of plots of DeltaG++ (activation energy) versus DeltaG(0) (equilibrium free energy) for a series of structural variants. Protein folding is more complex than simple chemical reactions and has a multitude of reaction coordinates. Phi-Value analysis measures degree of structure formation at individual residues in folding transition states from the ratio DeltaDeltaG++/DeltaDeltaG(0) for mutations. alpha values are now being used to analyze protein folding by lumping series of Phi values into single plots. But, there are discrepancies in the values of alpha for folding with more classical measures of the extent of structure formation, which I rationalize here. I show for chemical reactions with just a single reaction coordinate that alpha = r++ only for limiting cases, such as for reactants and products being in parabolic energy wells of identical curvature. Otherwise, alpha can differ radically from r++, with alpha being determined just by the angles of intersection of reactant and product energy surfaces. Phi is an index of the progress of a local, energy-based reaction coordinate at the global transition state: Phi <0.5 corresponds to <50% progress of the local coordinate at the global transition state and Phi >0.5 means >50%. Protein Leffler plots can force different local indexes to a single fit and give skewed underestimates of the extent of global structure formation in transition states that differ from other measures of structure formation.
对于简单化学反应,沿着反应坐标(r++)的过渡态位置通常根据莱夫勒α值来估计,莱夫勒α值是一系列结构变体的ΔG++(活化能)与ΔG(0)(平衡自由能)的关系图的斜率。蛋白质折叠比简单化学反应更为复杂,并且有众多反应坐标。Phi值分析通过突变的ΔΔG++/ΔΔG(0)比值来测量折叠过渡态中各个残基的结构形成程度。现在,α值正被用于通过将一系列Phi值汇总到单个图中来分析蛋白质折叠。但是,与更经典的结构形成程度测量方法相比,折叠的α值存在差异,我在此对其进行了合理化解释。我表明,对于只有单个反应坐标的化学反应,仅在极限情况下α = r++,例如反应物和产物处于曲率相同的抛物线形能量阱中。否则,α可能与r++有很大差异,α仅由反应物和产物能量表面的相交角度决定。Phi是全局过渡态下基于能量的局部反应坐标进展的指标:Phi <0.5对应于全局过渡态下局部坐标进展<50%,Phi >0.5意味着>50%。蛋白质莱夫勒图可能会强制不同的局部指标进行单一拟合,并对过渡态中全局结构形成程度给出与其他结构形成测量方法不同的偏差低估。