Helmholtz-Zentrum, Department of Structure Research on Macromolecules, 21502 Geesthacht, Germany.
Nucleic Acids Res. 2012 Jul;40(Web Server issue):W358-63. doi: 10.1093/nar/gks577. Epub 2012 Jun 13.
The MCPep server (http://bental.tau.ac.il/MCPep/) is designed for non-experts wishing to perform Monte Carlo (MC) simulations of helical peptides in association with lipid membranes. MCPep is a web implementation of a previously developed MC simulation model. The model has been tested on a variety of peptides and protein fragments. The simulations successfully reproduced available empirical data and provided new molecular insights, such as the preferred locations of peptides in the membrane and the contribution of individual amino acids to membrane association. MCPep simulates the peptide in the aqueous phase and membrane environments, both described implicitly. In the former, the peptide is subjected solely to internal conformational changes, and in the latter, each MC cycle includes additional external rigid body rotational and translational motions to allow the peptide to change its location in the membrane. The server can explore the interaction of helical peptides of any amino-acid composition with membranes of various lipid compositions. Given the peptide's sequence or structure and the natural width and surface charge of the membrane, MCPep reports the main determinants of peptide-membrane interactions, e.g. average location and orientation in the membrane, free energy of membrane association and the peptide's helical content. Snapshots of example simulations are also provided.
MCPep 服务器(http://bental.tau.ac.il/MCPep/)专为非专业人士设计,用于在与脂质膜结合的情况下对螺旋肽进行蒙特卡罗(MC)模拟。MCPep 是之前开发的 MC 模拟模型的网络实现。该模型已在各种肽和蛋白质片段上进行了测试。模拟成功再现了现有经验数据,并提供了新的分子见解,例如肽在膜中的优选位置以及单个氨基酸对膜结合的贡献。MCPep 模拟了水相和膜环境中的肽,这两种环境都是隐式描述的。在前一种环境中,肽仅受到内部构象变化的影响,在后一种环境中,每个 MC 循环包括额外的外部刚体旋转和平移运动,以使肽能够改变其在膜中的位置。该服务器可以探索任何氨基酸组成的螺旋肽与各种脂质组成的膜之间的相互作用。根据肽的序列或结构以及膜的天然宽度和表面电荷,MCPep 报告肽-膜相互作用的主要决定因素,例如在膜中的平均位置和取向、膜结合自由能以及肽的螺旋含量。还提供了示例模拟的快照。