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膜吸附螺旋肽的粗粒度模拟。

Coarse-Grain Simulations of Membrane-Adsorbed Helical Peptides.

机构信息

Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Oeiras, Portugal.

出版信息

Methods Mol Biol. 2022;2405:137-150. doi: 10.1007/978-1-0716-1855-4_7.

Abstract

The amphipathic α-helix is a common motif for peptide adsorption to membranes. Many physiologically relevant events involving membrane-adsorbed peptides occur over time and size scales readily accessible to coarse-grain molecular dynamics simulations. This methodological suitability, however, comes with a number of pitfalls. Here, I exemplify a multi-step adsorption equilibration procedure on the antimicrobial peptide Magainin 2. It involves careful control of peptide freedom to promote optimal membrane adsorption before other interactions are allowed. This shortens preparation times prior to production simulations while avoiding divergence into unrealistic or artifactual configurations.

摘要

两亲性 α-螺旋是肽吸附到膜上的常见基序。许多涉及到膜吸附肽的生理相关事件都发生在粗粒分子动力学模拟易于达到的时间和大小尺度上。然而,这种方法的适用性存在一些陷阱。在这里,我以抗菌肽 Magainin 2 为例,说明了一个多步骤的吸附平衡程序。它涉及到仔细控制肽的自由度,以促进最佳的膜吸附,然后再允许其他相互作用。这缩短了生产模拟前的准备时间,同时避免了发散到不现实或人为的构象。

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