Gabel F, Masson P, Froment M-T, Doctor B P, Saxena A, Silman I, Zaccai G, Weik M
Laboratoire de Biophysique Moléculaire, Institut de Biologie Structurale Jean-Pierre Ebel, CEA-CNRS-UJF, Grenoble, France.
Biophys J. 2009 Feb 18;96(4):1489-94. doi: 10.1016/j.bpj.2008.10.029.
An incoherent elastic neutron scattering study of the molecular dynamics of native human butyrylcholinesterase and its "aged" soman-inhibited conjugate revealed a significant change in molecular flexibility on an angstrom-nanosecond scale as a function of temperature. The results were related to the stability of each state as established previously by differential scanning calorimetry. A striking relationship was found between the denaturation behavior and the molecular flexibility of the native and inhibited enzymes as a function of temperature. This was reflected in a quantitative correlation between the atomic mean-square displacements on an angstrom-nanosecond scale determined by neutron spectroscopy and the calorimetric specific heat. By the application of a simple two-state model that describes the transition from a folded to a denatured state, the denaturation temperatures of the native and the inhibited enzyme were correctly extracted from the atomic mean-square displacements. Furthermore, the transition entropy and enthalpy extracted from the model fit of the neutron data were, within the experimental accuracy, compatible with the values determined by differential scanning calorimetry.
一项关于天然人丁酰胆碱酯酶及其“老化”梭曼抑制共轭物分子动力学的非相干弹性中子散射研究表明,在埃-纳秒尺度上,分子柔性随温度变化有显著改变。这些结果与先前通过差示扫描量热法确定的每种状态的稳定性相关。发现变性行为与天然酶和抑制酶在温度作用下的分子柔性之间存在显著关系。这反映在由中子光谱法测定的埃-纳秒尺度上的原子均方位移与量热比热之间的定量相关性上。通过应用描述从折叠态到变性态转变的简单双态模型,从原子均方位移中正确提取了天然酶和抑制酶的变性温度。此外,从中子数据的模型拟合中提取的转变熵和焓,在实验精度范围内,与差示扫描量热法测定的值相符。