Frauenfelder H, Sligar S G, Wolynes P G
Center for Advanced Study, University of Illinois, Champaign, Urbana 61801.
Science. 1991 Dec 13;254(5038):1598-603. doi: 10.1126/science.1749933.
Recent experiments, advances in theory, and analogies to other complex systems such as glasses and spin glasses yield insight into protein dynamics. The basis of the understanding is the observation that the energy landscape is complex: Proteins can assume a large number of nearly isoenergetic conformations (conformational substates). The concepts that emerge from studies of the conformational substates and the motions between them permit a quantitative discussion of one simple reaction, the binding of small ligands such as carbon monoxide to myoglobin.
近期的实验、理论进展以及与诸如玻璃和自旋玻璃等其他复杂系统的类比,为蛋白质动力学提供了深入见解。理解的基础在于观察到能量景观是复杂的:蛋白质可以呈现大量近乎等能的构象(构象亚态)。从对构象亚态及其之间运动的研究中得出的概念,使得对一个简单反应——诸如一氧化碳等小配体与肌红蛋白的结合——进行定量讨论成为可能。