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一种均聚多肽的螺旋-线圈转变的粗粒度模型及相关晶格蒙特卡罗模拟。

A coarse-grained model and associated lattice Monte Carlo simulation of the coil-helix transition of a homopolypeptide.

作者信息

Chen Yantao, Zhang Qi, Ding Jiandong

机构信息

Department of Macromolecular Science, Key Laboratory of Molecular Engineering of Polymers, Fudan University, Shanghai 200433, China.

出版信息

J Chem Phys. 2004 Feb 15;120(7):3467-74. doi: 10.1063/1.1640667.

Abstract

A new coarse-grained lattice model neglecting atomic details is proposed for the coil-helix transition and a new physical parameter is suggested to characterize a helical structure. In our model, each residue is represented by eight lattice sites, and side groups are not considered explicitly. Chirality and hydrogen bonding are taken into consideration in addition to chain connectivity and the excluded volume effect. Through a dynamic Monte Carlo simulation, the physical properties of the coil-helix transition of a single homopolypeptide have been produced successfully within a short computing time on the PC. We also examined the effects of the variation of chain configurations including chain size and chain shape, etc. A spatial correlation function has been introduced in order to characterize periodicity of a helical chain in a simple way. A propagation parameter and a nucleation parameter have also been calculated, which compares favorably with the results of the Zimm-Bragg theory for the coil-helix transition.

摘要

针对线圈-螺旋转变,提出了一种忽略原子细节的新粗粒化晶格模型,并提出了一个新的物理参数来表征螺旋结构。在我们的模型中,每个残基由八个晶格点表示,侧基不被明确考虑。除了链连接性和排除体积效应外,还考虑了手性和氢键。通过动态蒙特卡罗模拟,在个人电脑上短时间内成功地得到了单一均聚多肽的线圈-螺旋转变的物理性质。我们还研究了包括链大小和链形状等链构型变化的影响。引入了一个空间相关函数,以便以简单的方式表征螺旋链的周期性。还计算了一个传播参数和一个成核参数,其结果与齐姆-布拉格线圈-螺旋转变理论的结果相比具有优势。

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