亚琛乌龙鱼抗菌短肽螺旋向无序转变的分子动力学研究。

IF 2.2 4区 生物学 Q3 BIOPHYSICS
Flora Fernandez-Sánchez, Jenny Flores-Ávila, Hugo S. García, Edgar Mixcoha, Daniel Balleza
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引用次数: 0

摘要

研究了亚爪蝎抗菌短肽(ssAMPs) UyCT1、CT2、CT3、CT5、Uy17、Uy192和Uy234的生物活性。在这些研究中报道的对一些临床分离的致病菌的拮抗作用,包括金黄色葡萄球菌、肺炎克雷伯菌和大肠杆菌,用计算机方法研究了它们在分子方面的生物活性。通过AlphaFold2生成高质量结构的肽模型,适当验证,并在Gromos 43a1和Charmm 36力场的水系统中进行动态模拟。我们的分析表明,这些肽的螺旋度与它们的组成和几个物理化学因素密切相关,如疏水性指数、静电势、固有柔韧性和偶极矩。我们还发现,在所提到的顺序程度和效力之间的有趣的相似之处,每个肽与先前研究的细菌菌株,特别是金黄色葡萄球菌。我们更详细地分析了两种特定的肽,UyCT1和UyCT2,它们的序列几乎相同,除了前者存在一个g帽。这种微妙的差异对这些肽的构象动力学有决定性的影响,使UyCT2肽更容易紊乱,而UyCT1肽通过形成多个氢键而更稳定。该分析基于对这些ssAMPs的物理化学性质的详尽描述,以及它们的构象动力学和与实验数据的相关性的确定,可以为基于蝎子毒液中发现的天然肽的新药设计和优化提供基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular dynamics study of the helix-to-disorder transition in short antimicrobial peptides from Urodacus yaschenkoi

The bioactivity of the short antimicrobial peptides (ssAMPs) UyCT1, CT2, CT3, CT5, Uy17, Uy192, and Uy234 from the scorpion Urodacus yaschenkoi has been well-characterized. The antagonistic effect reported in those studies on some clinical isolates of pathogenic bacteria, including Staphylococcus aureus, Klebsiella pneumoniae, and Escherichia coli was studied with an in silico approach to contrast their bioactivity in molecular terms. The peptides were modeled by generating high-quality structures with AlphaFold2, properly validated, and subjected to dynamic simulations in aqueous systems with the Gromos 43a1 and Charmm 36 force fields. Our analysis indicates that the degree of helicity of these peptides is closely linked to their composition and several physicochemical factors such as the hydrophobicity index, electrostatic potential, intrinsic flexibility, and dipole moment. We also found interesting parallels between the degree of order mentioned and the potency of each peptide with previously studied bacterial strains, specifically S. aureus. We analyzed in more detail of two specific peptides, UyCT1 and UyCT2, whose sequences are almost identical, except for the presence of a G-cap in the former. This subtle difference has a decisive impact on the conformational dynamics of these peptides, making the UyCT2 peptide more prone to disorder and the UyCT1 peptide more stable through the formation of multiple H-bonds. This analysis, based on an exhaustive characterization of the physicochemical properties of these ssAMPs, together with the determination of their conformational dynamics and the correlation with experimental data, could be the basis for the design and optimization of new drugs based on natural peptides found in scorpion venoms.

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来源期刊
European Biophysics Journal
European Biophysics Journal 生物-生物物理
CiteScore
4.30
自引率
0.00%
发文量
43
审稿时长
6-12 weeks
期刊介绍: The journal publishes papers in the field of biophysics, which is defined as the study of biological phenomena by using physical methods and concepts. Original papers, reviews and Biophysics letters are published. The primary goal of this journal is to advance the understanding of biological structure and function by application of the principles of physical science, and by presenting the work in a biophysical context. Papers employing a distinctively biophysical approach at all levels of biological organisation will be considered, as will both experimental and theoretical studies. The criteria for acceptance are scientific content, originality and relevance to biological systems of current interest and importance. Principal areas of interest include: - Structure and dynamics of biological macromolecules - Membrane biophysics and ion channels - Cell biophysics and organisation - Macromolecular assemblies - Biophysical methods and instrumentation - Advanced microscopics - System dynamics.
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