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All-Atom Direct Folding Simulation for Proteins Using the Accelerated Molecular Dynamics in Implicit Solvent Model 被引量:1
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作者 李宗超 段莉莉 +1 位作者 冯国强 张庆刚 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第11期169-172,共4页
We report the results of protein folding (219M, C34, N36, 2KES, 2KHK) by the method of accelerated molecular dynamics (aMD) at room temperature with the implicit solvent model. Starting from the linear structures,... We report the results of protein folding (219M, C34, N36, 2KES, 2KHK) by the method of accelerated molecular dynamics (aMD) at room temperature with the implicit solvent model. Starting from the linear structures, these proteins successfully fold to the native structure in a lO0-ns aMD simulation. In contrast, they are failed under the traditional MD simulation in the same simulation time. Then we find that the lowest root mean square deviations of helix structures from the native structures are 0.36 A, 0.63 A, 0.52 A, 1.1 A and 0.78 A. What is more, native contacts, cluster and free energy analyses show that the results of the aMD method are in accordance with the experiment very well. All analyses show that the aMD can accelerate the simulation process, thus we may apply it to the field of computer aided drug designs. 展开更多
关键词 KES MD KHK All-Atom Direct folding simulation for proteins Using the Accelerated Molecular Dynamics in Implicit Solvent Model
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Explicit solvent molecular dynamics simulations of chaperonin-assisted rhodanese folding 被引量:3
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作者 Ying Ren Jian Gao +2 位作者 Ji XU Wei Ge Jinghai Li 《Particuology》 SCIE EI CAS CSCD 2009年第3期220-224,共5页
Chaperonins are known to facilitate the productive folding of numerous misfolded proteins. Despite their established importance, the mechanism of chaperonin-assisted protein folding remains unknown. In the present art... Chaperonins are known to facilitate the productive folding of numerous misfolded proteins. Despite their established importance, the mechanism of chaperonin-assisted protein folding remains unknown. In the present article, all-atom explicit solvent molecular dynamics (MD) simulations have been performed for the first time on rhodanese folding in a series of cavity-size and cavity-charge chaperonin mutants. A compromise between stability and flexibility of chaperonin structure during the substrate folding has been observed and the key factors affecting this dynamic process are discussed. 展开更多
关键词 Molecular dynamics simulation Explicit solvent Chaperonin-assisted protein folding Molecular chaperonin Rhodanese
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