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抗菌肽跨模型膜的转运:肽链长度的作用。

Translocation of Antimicrobial Peptides across Model Membranes: The Role of Peptide Chain Length.

机构信息

Division of Computational Chemistry, Department of Chemistry, Lund University, P.O. Box 124, SE-221 00, Lund, Sweden.

Institut Laue-Langevin, 71 Avenue des Martyrs, 38000 Grenoble, France.

出版信息

Mol Pharm. 2024 Aug 5;21(8):4082-4097. doi: 10.1021/acs.molpharmaceut.4c00450. Epub 2024 Jul 12.

Abstract

Cushioned lipid bilayers are structures consisting of a lipid bilayer supported on a solid substrate with an intervening layer of soft material. They offer possibilities for studying the behavior and interactions of biological membranes more accurately under physiological conditions. In this work, we continue our studies of cushion formation induced by histatin 5 (Hst5), focusing on the effect of the length of the peptide chain. Hst5 is a short, positively charged, intrinsically disordered saliva peptide, and here, both a shorter (Hst5) and a longer (Hst5) peptide variant were evaluated. Experimental surface active techniques were combined with coarse-grained Monte Carlo simulations to obtain information about these peptides. Results show that at 10 mM NaCl, both the shorter and the longer peptide variants behave like Hst5 and a cushion below the bilayer is formed. At 150 mM NaCl, however, no interaction is observed for Hst5. On the contrary, a cushion is formed both in the case of Hst5 and Hst5, and in the latter, an additional thick, diffuse, and highly hydrated layer of peptide and lipid molecules is formed, on top of the bilayer. Similar trends were observed from the simulations, which allowed us to hypothesize that positively charged patches of the amino acids lysine and arginine in all three peptides are essential for them to interact with and translocate over the bilayer. We therefore hypothesize that electrostatic interactions are important for the interaction between the solid-supported lipid bilayers and the peptide depending on the linear charge density through the primary sequence and the positively charged patches in the sequence. The understanding of how, why, and when the cushion is formed opens up the possibility for this system to be used in the research and development of new drugs and pharmaceuticals.

摘要

缓冲脂质双层是由脂质双层支撑在固体基底上,中间隔着一层柔软材料的结构。它们为在生理条件下更准确地研究生物膜的行为和相互作用提供了可能性。在这项工作中,我们继续研究组氨酸 5(Hst5)诱导的缓冲形成,重点研究肽链长度的影响。Hst5 是一种短的、带正电荷的、固有无序的唾液肽,在这里,评估了较短的(Hst5)和较长的(Hst5)肽变体。实验表面活性技术与粗粒度蒙特卡罗模拟相结合,以获得有关这些肽的信息。结果表明,在 10mM NaCl 下,较短和较长的肽变体都表现得像 Hst5,并在双层下方形成缓冲层。然而,在 150mM NaCl 下,Hst5 没有观察到相互作用。相反,在 Hst5 和 Hst5 的情况下都形成了缓冲层,并且在后一种情况下,在双层上方形成了一层额外的厚的、弥散的、高度水合的肽和脂质分子的层。模拟也观察到了类似的趋势,这使我们假设所有三种肽中的氨基酸赖氨酸和精氨酸的正电荷斑对于它们与双层相互作用并穿过双层是必不可少的。因此,我们假设静电相互作用对于固体支撑脂质双层与肽之间的相互作用很重要,这取决于线性电荷密度通过主序列和序列中的正电荷斑。了解缓冲层是如何、为什么以及何时形成的,为该系统在新药和药物研发中的应用开辟了可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97f0/11304388/7ac6e7589bb0/mp4c00450_0001.jpg

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