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膜渗透肽的作用机制全景

Mechanistic Landscape of Membrane-Permeabilizing Peptides.

机构信息

Department of Biochemistry and Molecular Biology Tulane University School of Medicine , New Orleans , Louisiana 70112 , United States.

出版信息

Chem Rev. 2019 May 8;119(9):6040-6085. doi: 10.1021/acs.chemrev.8b00520. Epub 2019 Jan 9.

Abstract

Membrane permeabilizing peptides (MPPs) are as ubiquitous as the lipid bilayer membranes they act upon. Produced by all forms of life, most membrane permeabilizing peptides are used offensively or defensively against the membranes of other organisms. Just as nature has found many uses for them, translational scientists have worked for decades to design or optimize membrane permeabilizing peptides for applications in the laboratory and in the clinic ranging from antibacterial and antiviral therapy and prophylaxis to anticancer therapeutics and drug delivery. Here, we review the field of membrane permeabilizing peptides. We discuss the diversity of their sources and structures, the systems and methods used to measure their activities, and the behaviors that are observed. We discuss the fact that "mechanism" is not a discrete or a static entity for an MPP but rather the result of a heterogeneous and dynamic ensemble of structural states that vary in response to many different experimental conditions. This has led to an almost complete lack of discrete three-dimensional active structures among the thousands of known MPPs and a lack of useful or predictive sequence-structure-function relationship rules. Ultimately, we discuss how it may be more useful to think of membrane permeabilizing peptides mechanisms as broad regions of a mechanistic landscape rather than discrete molecular processes.

摘要

膜渗透肽 (MPP) 普遍存在于它们作用的脂质双分子层膜中。大多数膜渗透肽由所有生命形式产生,它们被用于对其他生物的膜进行攻击或防御。就像自然界对它们有多种用途一样,转化科学家们几十年来一直在设计或优化膜渗透肽,以将其应用于实验室和临床,从抗菌和抗病毒治疗和预防到抗癌治疗和药物输送。在这里,我们回顾了膜渗透肽领域。我们讨论了它们来源和结构的多样性、用于测量其活性的系统和方法,以及观察到的行为。我们讨论了这样一个事实,即对于 MPP 来说,“机制”不是一个离散的或静态的实体,而是一个由多种不同实验条件下变化的结构状态的异质和动态集合所导致的结果。这导致了在数千种已知的 MPP 中几乎完全缺乏离散的三维活性结构,并且缺乏有用或可预测的序列-结构-功能关系规则。最终,我们讨论了将膜渗透肽机制视为机制景观中的广泛区域而不是离散的分子过程可能会更有用。

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