Satoh Daisuke, Shimizu Kentaro, Nakamura Shugo, Terada Tohru
Graduate School of Agricultural and Life Sciences, The University of Tokyo, Bunkyo-ku, Japan.
FEBS Lett. 2006 Jun 12;580(14):3422-6. doi: 10.1016/j.febslet.2006.05.015. Epub 2006 May 11.
Chignolin is an artificial mini-protein composed of 10 residues (GYDPETGTWG) that has been shown to cooperatively fold into a beta-hairpin structure in water. We extensively explored the conformational space of chignolin using a 180-ns multicanonical molecular dynamics (MD) simulation and analyzed its folding free-energy landscape. In the MD trajectory, we found structures that satisfy 99% of the experimental restraints and are quite close to the experimentally determined structures with C(alpha) root-mean-square-deviations of less than 0.5 Angstroms. These structures formed a large cluster in the conformational space with the largest probability of existence, agreeing well with the experiment.
奇诺林是一种由10个残基(GYDPETGTWG)组成的人工微型蛋白质,已证明其在水中能协同折叠成β-发夹结构。我们使用180纳秒的多正则分子动力学(MD)模拟广泛探索了奇诺林的构象空间,并分析了其折叠自由能景观。在MD轨迹中,我们发现了满足99%实验约束条件的结构,这些结构与实验测定的结构非常接近,Cα均方根偏差小于0.5埃。这些结构在构象空间中形成了一个存在概率最大的大簇,与实验结果吻合良好。