Wright Caroline F, Steward Annette, Clarke Jane
Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.
J Mol Biol. 2004 Apr 30;338(3):445-51. doi: 10.1016/j.jmb.2004.02.062.
Recent work has shown that a beta-sandwich domain from the human muscle protein titin (TI I27) unfolds via more than one pathway, providing experimental evidence for a long-standing theoretical prediction in protein folding. Here we present a thermodynamic analysis of two transition states along different folding pathways for this protein. The unusual upwards curvature previously observed in the denaturant-dependent unfolding kinetics is increased at both high and low temperatures, indicating that the high denaturant pathway is becoming more accessible. The transition states in each pathway are structurally distinct and have very different heat capacities. Interestingly the nucleation-condensation pathway is dominant at all physiologically relevant temperatures, supporting the suggestion that pathways with diffuse rather than localised transition states have been selected for by evolution to prevent misfolding.
近期研究表明,人类肌肉蛋白肌联蛋白中的一个β-三明治结构域(TI I27)通过不止一条途径展开,为蛋白质折叠领域长期存在的理论预测提供了实验证据。在此,我们对该蛋白质沿不同折叠途径的两个过渡态进行了热力学分析。先前在变性剂依赖性展开动力学中观察到的不寻常向上曲率在高温和低温下均增大,表明高变性剂途径变得更容易实现。每条途径中的过渡态在结构上不同,且具有非常不同的热容。有趣的是,成核-凝聚途径在所有生理相关温度下均占主导,这支持了一种观点,即进化选择了具有弥散而非局部化过渡态的途径以防止错误折叠。