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大环肽,一种经过合成进化的具有孔道形成能力的肽家族,可强力通透脂双层形成巨大孔道。

Potent Macromolecule-Sized Poration of Lipid Bilayers by the Macrolittins, A Synthetically Evolved Family of Pore-Forming Peptides.

机构信息

Materials Science and Engineering , Johns Hopkins University , Baltimore , Maryland 21218 , United States.

Physics and Astronomy , University of Missouri , Columbia , Missouri 65201 , United States.

出版信息

J Am Chem Soc. 2018 May 23;140(20):6441-6447. doi: 10.1021/jacs.8b03026. Epub 2018 May 9.

Abstract

Pore-forming peptides with novel functions have potential utility in many biotechnological applications. However, the sequence-structure-function relationships of pore forming peptides are not understood well enough to empower rational design. Therefore, in this work, we used synthetic molecular evolution to identify a novel family of peptides that are highly potent and cause macromolecular poration in synthetic lipid vesicles at low peptide concentration and at neutral pH. These unique 26-residue peptides, which we call macrolittins, release macromolecules from lipid bilayer vesicles made from zwitterionic PC lipids at peptide to lipid ratios as low as 1:1000, a property that is almost unprecedented among known membrane permeabilizing peptides. The macrolittins exist as membrane-spanning α-helices. They cause dramatic bilayer thinning and form large pores in planar supported bilayers. The high potency of these peptides is likely due to their ability to stabilize bilayer edges by a process that requires specific electrostatic interactions between peptides.

摘要

具有新功能的孔形成肽在许多生物技术应用中具有潜在的用途。然而,孔形成肽的序列-结构-功能关系还没有被充分理解,无法进行合理的设计。因此,在这项工作中,我们使用合成分子进化来鉴定一类新型的肽,它们在低肽浓度和中性 pH 值下,在合成脂质体中具有很高的效力,并导致大分子穿孔。这些独特的 26 个残基的肽,我们称之为大环肽,以低至 1:1000 的肽与脂质比,从由两性离子 PC 脂质制成的脂质双层囊泡中释放大分子,这一性质在已知的膜通透肽中几乎是前所未有的。大环肽以跨膜 α-螺旋的形式存在。它们导致双层明显变薄,并在平面支撑双层中形成大孔。这些肽的高效能可能是由于它们通过一种需要肽之间特定静电相互作用的过程来稳定双层边缘的能力。

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