Hawkes R, Grutter M G, Schellman J
J Mol Biol. 1984 May 15;175(2):195-212. doi: 10.1016/0022-2836(84)90474-1.
The thermodynamics of melting of bacteriophage T4 lysozyme and four of its mutants have been measured by van't Hoff methods. The effect of pH has been explored and utilized to obtain the dependence of the enthalpy on temperature as suggested by Privalov and co-workers. The enthalpy change is a steep linear function of temperature. delta Cp is large and constant within experimental error. Changes in delta Hu are as large as 30% for a single point mutation. Changes in enthalpy are largely compensated by changes in entropy. Changes in stability, as measured by the free energy of unfolding, are smaller than those of delta H, but are very large in a relative sense, since delta G is very much smaller than delta H. Origins of the destabilization caused by mutations are discussed.
已通过范特霍夫方法测量了噬菌体T4溶菌酶及其四个突变体的熔化热力学。如普里瓦洛夫及其同事所建议的,已对pH的影响进行了探索,并利用该影响来获得焓对温度的依赖性。焓变是温度的陡峭线性函数。在实验误差范围内,恒压热容变化量大且恒定。单点突变导致的焓变变化高达30%。焓变在很大程度上由熵变补偿。以解折叠自由能衡量的稳定性变化比焓变变化小,但从相对意义上讲非常大,因为吉布斯自由能比焓小得多。文中讨论了由突变引起的去稳定化的起源。