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抗菌肽通过原子和粗粒描述的组合进行膜穿孔。

Membrane poration by antimicrobial peptides combining atomistic and coarse-grained descriptions.

机构信息

Groningen Biomolecular Sciences and Biotechnology Institute & Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747, AG, Groningen, The Netherlands.

出版信息

Faraday Discuss. 2010;144:431-43; discussion 445-81. doi: 10.1039/b901615e.

Abstract

Antimicrobial peptides (AMPs) comprise a large family of peptides that include small cationic peptides, such as magainins, which permeabilize lipid membranes. Previous atomistic level simulations of magainin-H2 peptides show that they act by forming toroidal transmembrane pores. However, due to the atomistic level of description, these simulations were necessarily limited to small system sizes and sub-microsecond time scales. Here, we study the long-time relaxation properties of these pores by evolving the systems using a coarse-grain (CG) description. The disordered nature and the topology of the atomistic pores are maintained at the CG level. The peptides sample different orientations but at any given time, only a few peptides insert into the pore. Key states observed at the CG level are subsequently back-transformed to the atomistic level using a resolution-transformation protocol. The configurations sampled at the CG level are stable in the atomistic simulation. The effect of helicity on pore stability is investigated at the CG level and we find that partial helicity is required to form stable pores. We also show that the current CG scheme can be used to study spontaneous poration by magainin-H2 peptides. Overall, our simulations provide a multi-scale view of a fundamental biophysical membrane process involving a complex interplay between peptides and lipids.

摘要

抗菌肽(AMPs)是一个庞大的肽家族,包括小阳离子肽,如magainins,它们可以使脂质膜穿孔。以前对 magainin-H2 肽的原子水平模拟表明,它们通过形成环形跨膜孔来发挥作用。然而,由于原子水平的描述,这些模拟必然受到小系统尺寸和亚微秒时间尺度的限制。在这里,我们通过使用粗粒化(CG)描述来演化系统,研究这些孔的长时间弛豫特性。在 CG 水平上保持了原子孔的无序性质和拓扑结构。肽可以采取不同的取向,但在任何给定的时间,只有少数肽插入孔中。在 CG 水平上观察到的关键状态随后使用分辨率转换协议转换回原子水平。CG 水平上采样的配置在原子模拟中是稳定的。在 CG 水平上研究了螺旋对孔稳定性的影响,我们发现形成稳定孔需要部分螺旋。我们还表明,目前的 CG 方案可用于研究 magainin-H2 肽的自发穿孔。总的来说,我们的模拟提供了一个涉及肽和脂质之间复杂相互作用的基本生物物理膜过程的多尺度视图。

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