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膜活性肽:在脂质囊泡中的结合、转运及通量

Membrane-active peptides: binding, translocation, and flux in lipid vesicles.

作者信息

Almeida Paulo F

机构信息

Department of Chemistry and Biochemistry, University of North Carolina Wilmington, Wilmington, NC 28403, USA.

出版信息

Biochim Biophys Acta. 2014 Sep;1838(9):2216-27. doi: 10.1016/j.bbamem.2014.04.014. Epub 2014 Apr 25.

Abstract

Recently, new and improved methods have been developed to measure translocation of membrane-active peptides (antimicrobial, cytolytic, and amphipathic cell-penetrating peptides) across lipid bilayer membranes. The hypothesis that translocation of membrane-active peptides across a lipid bilayer is determined by the Gibbs energy of insertion of the peptide into the bilayer is re-examined in the light of new experimental tests. The original hypothesis and its motivation are first revisited, examining some of the specific predictions that it generated, followed by the results of the initial tests. Translocation is understood as requiring two previous steps: binding and insertion in the membrane. The problem of peptide binding to membranes, its prediction, measurement, and calculation are addressed. Particular attention is given to understanding the reason for the need for amphipathic structures in the function of membrane-active peptides. Insertion into the membrane is then examined. Hydrophobicity scales are compared, and their influence on calculations is discussed. The relation between translocation and graded or all-or-none peptide-induced flux from or into lipid vesicles is also considered. Finally, the most recent work on translocation is examined, both experimental and from molecular dynamics simulations. This article is part of a Special Issue entitled: Interfacially Active Peptides and Proteins. Guest Editors: William C. Wimley and Kalina Hristova.

摘要

最近,已开发出新颖且经过改进的方法来测量膜活性肽(抗菌肽、溶细胞肽及两亲性细胞穿透肽)跨脂质双分子层膜的转运。鉴于新的实验测试结果,重新审视了膜活性肽跨脂质双分子层转运由肽插入双分子层的吉布斯自由能决定这一假说。首先回顾原始假说及其动机,审视其产生的一些具体预测,接着是初始测试的结果。转运被理解为需要先前的两个步骤:在膜中的结合和插入。探讨了肽与膜结合的问题、其预测、测量及计算。特别关注理解膜活性肽功能中两亲性结构需求的原因。随后研究肽插入膜的情况。比较了疏水性标度,并讨论了它们对计算的影响。还考虑了转运与来自脂质囊泡或进入脂质囊泡的分级或全或无肽诱导通量之间的关系。最后,审视了关于转运的最新研究工作,包括实验研究和分子动力学模拟研究。本文是名为:界面活性肽和蛋白质的特刊的一部分。客座编辑:威廉·C·温姆利和卡利娜·赫里斯托娃。

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