Dixon M E, Hitchens T K, Bryant R G
Department of Chemistry, University of Virginia, Charlottesville 22901, USA.
Biochemistry. 2000 Jan 11;39(1):248-54. doi: 10.1021/bi991718y.
Activation enthalpies and entropies are reported for proton-deuteron exchange at 42 amide sites in T4 lysozyme and compared with activation volumes for the same residues obtained earlier [Hitchens, T. K., and Bryant, R. G. (1998) Biochemistry 37, 5878-5887]. There is no correlation found between activation volume and activation entropy or activation enthalpy. The activation enthalpy is linearly related to the activation entropy in part as a consequence of a relatively narrow sampling window for the rate constants that corresponds to a narrow range of activation free energy. A consequence of the entropy-enthalpy compensation is preservation of rank order of proton exchange. Variations in DeltaH, DeltaS, and DeltaV for residues that are structurally close together in the folded protein suggest that there may be a variety of energetically distinct pathways for the access of solvent to these structurally related exchange sites.
报道了T4溶菌酶中42个酰胺位点质子 - 氘交换的活化焓和活化熵,并与之前获得的相同残基的活化体积进行了比较[希钦斯,T.K.,和布赖恩特,R.G.(1998年)《生物化学》37,5878 - 5887]。未发现活化体积与活化熵或活化焓之间存在相关性。活化焓与活化熵呈线性关系,部分原因是速率常数的采样窗口相对较窄,这对应于较窄的活化自由能范围。熵 - 焓补偿的一个结果是质子交换的顺序得以保留。折叠蛋白中结构紧密相邻的残基的ΔH、ΔS和ΔV的变化表明,溶剂进入这些结构相关的交换位点可能存在多种能量上不同的途径。