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蜂毒素可以通过大的瞬时孔使膜穿孔。

Melittin can permeabilize membranes via large transient pores.

机构信息

Institute of Natural Sciences and School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai, China.

Department of Chemistry, King's College London, London, UK.

出版信息

Nat Commun. 2024 Aug 23;15(1):7281. doi: 10.1038/s41467-024-51691-1.

Abstract

Membrane active peptides are known to porate lipid bilayers, but their exact permeabilization mechanism and the structure of the nanoaggregates they form in membranes have often been difficult to determine experimentally. For many sequences at lower peptide concentrations, transient leakage is observed in experiments, suggesting the existence of transient pores. For two well-know peptides, alamethicin and melittin, we show here that molecular mechanics simulations i) can directly distinguish equilibrium poration and non-equilibrium transient leakage processes, and ii) can be used to observe the detailed pore structures and mechanism of permeabilization in both cases. Our results are in very high agreement with numerous experimental evidence for these two peptides. This suggests that molecular simulations can capture key membrane poration phenomena directly and in the future may develop to be a useful tool that can assist experimental peptide design.

摘要

膜活性肽已知可刺穿脂双层,但它们的确切渗透机制以及在膜中形成的纳米聚集体的结构在实验中常常难以确定。对于较低浓度肽的许多序列,实验中观察到短暂的泄漏,表明存在瞬时孔。对于两种众所周知的肽,蜂毒素和蜂毒素,我们在这里表明,分子力学模拟 i)可以直接区分平衡穿孔和非平衡瞬时泄漏过程,并且 ii)可用于观察两种情况下的详细孔结构和渗透机制。我们的结果与这两种肽的大量实验证据非常吻合。这表明分子模拟可以直接捕获关键的膜穿孔现象,并且将来可能发展成为一种有用的工具,可以辅助实验性肽设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f004/11343860/640a6fa5cecc/41467_2024_51691_Fig1_HTML.jpg

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