Masson P, Laurentie M
Centre d'Etudes et de Recherches Biophysiologiques, Division de Biochimie, Toulon-Naval, France.
Biochim Biophys Acta. 1988 Nov 2;957(1):111-21. doi: 10.1016/0167-4838(88)90163-x.
Irreversible thermal inactivation of the tetrameric form of human plasma butyrylcholinesterase (cholinesterase; EC 3.1.1.8) was studied in water and in deuterium oxide at pH 7 in the temperature range 53-65 degrees C. The enzyme inactivation follows a complex kinetics that may be described by the sum of two apparent first-order processes. The Eyring plot for enzyme inactivation exhibits a wavelike discontinuity over a span of 2 C degrees around 58 degrees C. This transition was interpreted in terms of equilibrium between two temperature-dependent conformational states. Though 2H2O does not alter the overall multistep inactivation process, a slight solvent isotope effect was observed: a stabilizing effect and a shift in the transition temperature. A comparison between several enzyme preparations revealed differences in thermodynamic activation parameters of inactivation suggesting microheterogeneity in enzyme structures. Kinetics of inactivation of usual (E1uE1u) and atypical (E1aEa1a++) enzymes were compared. The atypical enzyme was found to be more stable than the usual phenotype.
在53 - 65摄氏度的温度范围内,于pH 7的水和重水中研究了人血浆丁酰胆碱酯酶(胆碱酯酶;EC 3.1.1.8)四聚体形式的不可逆热失活。酶失活遵循复杂的动力学,可用两个表观一级过程的总和来描述。酶失活的艾林曲线在58摄氏度左右2摄氏度的范围内呈现出波状不连续性。这种转变被解释为两种温度依赖性构象状态之间的平衡。虽然重水不会改变整体的多步失活过程,但观察到了轻微的溶剂同位素效应:一种稳定作用和转变温度的偏移。几种酶制剂之间的比较揭示了失活热力学活化参数的差异,表明酶结构存在微观异质性。比较了常见型(E1uE1u)和非典型型(E1aEa1a++)酶的失活动力学。发现非典型酶比常见表型更稳定。