Scott Kathryn A, Randles Lucy G, Moran Stephen J, Daggett Valerie, Clarke Jane
MRC Centre for Protein Engineering, University of Cambridge Chemical Laboratory, UK.
J Mol Biol. 2006 May 26;359(1):159-73. doi: 10.1016/j.jmb.2006.03.011. Epub 2006 Mar 21.
We present an experimental and computational analysis of the folding pathway of the 17th domain of chicken brain alpha-spectrin, R17. Wild-type R17 folds in a two-state manner and the chevron plot (plot of the logarithm of the observed rate constant against concentration of urea) shows essentially linear folding and unfolding arms. A number of mutant proteins, however, show a change in slope of the unfolding arm at high concentration of denaturant, hinting at complexity in the folding landscape. Through a combination of mutational studies and high temperature molecular dynamics simulations we show that the folding of R17 can be described by a model with two sequential transition states separated by an intermediate species. The rate limiting transition state for folding in water has been characterized both through experimental Phi-value analysis and by simulation. In contrast, a detailed analysis of the transition state predicted to dominate under highly denaturing conditions is only possible by simulation.
我们展示了对鸡脑α-血影蛋白第17结构域R17折叠途径的实验和计算分析。野生型R17以两态方式折叠,而V形图(观察到的速率常数的对数与尿素浓度的关系图)显示出基本呈线性的折叠和展开臂。然而,一些突变蛋白在高浓度变性剂下展开臂的斜率发生了变化,这暗示了折叠态势的复杂性。通过突变研究和高温分子动力学模拟相结合,我们表明R17的折叠可以用一个具有两个由中间物种分隔的连续过渡态的模型来描述。通过实验Phi值分析和模拟,已经对水中折叠的限速过渡态进行了表征。相比之下,只有通过模拟才能对预计在高度变性条件下占主导地位的过渡态进行详细分析。