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胆固醇对膜靶向生物活性肽的影响:通过双层生物物理性质的变化调节肽活性。

The Influence of Cholesterol on Membrane Targeted Bioactive Peptides: Modulating Peptide Activity Through Changes in Bilayer Biophysical Properties.

作者信息

Giraldo-Lorza Juan M, Leidy Chad, Manrique-Moreno Marcela

机构信息

Chemistry Institute, Faculty of Exact and Natural Sciences, University of Antioquia, A.A. 1226, Medellin 050010, Colombia.

Biophysics Group, Physics Department, Universidad de los Andes, Bogotá 111711, Colombia.

出版信息

Membranes (Basel). 2024 Oct 17;14(10):220. doi: 10.3390/membranes14100220.

Abstract

Cholesterol is a biological molecule that is essential for cellular life. It has unique features in terms of molecular structure and function, and plays an important role in determining the structure and properties of cell membranes. One of the most recognized functions of cholesterol is its ability to increase the level of lipid packing and rigidity of biological membranes while maintaining high levels of lateral mobility of the bulk lipids, which is necessary to sustain biochemical signaling events. There is increased interest in designing bioactive peptides that can act as effective antimicrobial agents without causing harm to human cells. For this reason, it becomes relevant to understand how cholesterol can affect the interaction between bioactive peptides and lipid membranes, in particular by modulating the peptides' ability to penetrate and disrupt the membranes through these changes in membrane rigidity. Here we discuss cholesterol and its role in modulating lipid bilayer properties and discuss recent evidence showing how cholesterol modulates bioactive peptides to different degrees.

摘要

胆固醇是一种对细胞生命至关重要的生物分子。它在分子结构和功能方面具有独特特征,在决定细胞膜的结构和性质方面发挥着重要作用。胆固醇最广为人知的功能之一是,它能够在保持大部分脂质高水平侧向流动性的同时,提高生物膜的脂质堆积水平和刚性,而这对于维持生化信号传导事件是必要的。人们对设计能够作为有效抗菌剂且不对人类细胞造成伤害的生物活性肽越来越感兴趣。因此,了解胆固醇如何影响生物活性肽与脂质膜之间的相互作用就变得很重要,特别是通过调节肽通过膜刚性变化穿透和破坏膜的能力。在这里,我们讨论胆固醇及其在调节脂质双层性质中的作用,并讨论最近的证据,这些证据表明胆固醇如何不同程度地调节生物活性肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54b2/11509253/a6afd59e9c3e/membranes-14-00220-g001.jpg

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