Temporizin-1 Meets the Membranes: Probing Membrane Inser-Tion and Disruption Mechanisms.

IF 4.6 2区 医学 Q1 INFECTIOUS DISEASES
Rosa Bellavita, Sara Palladino, Karyne Rangel, Guilherme Curty Lechuga, Lorenzo Emiliano Imbò, Lucia Falcigno, Gabriella D'Auria, Leonardo da Silva Lara, Mirian Cláudia de Souza Pereira, Salvatore Giovanni De-Simone, Stefania Galdiero, Annarita Falanga
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引用次数: 0

Abstract

Background/Objectives: Temporizin-1, a hybrid antimicrobial peptide derived from the combination of Temporin A, Gramicidin peptide, and a poly-leu sequence, has strong trypanocide activity against Trypanosoma cruzi and moderate cytotoxicity towards mammalian cells. In this study, we investigated the mode of action of the peptide upon interaction with protozoan and eukaryotic membranes. Methods: To this end, we conducted a series of biophysical assays using liposomes as biomimetic models, along with fluorescence-based experiments such as lipid mixing, membrane leakage, and assays involving Thioflavin and Laurdan. Results: Temporizin-1 displayed potent membranolytic activity on protozoan and eukaryotic membranes, causing significant membrane fusion and leakage with consequent pore formation. In addition, we also performed structural studies on liposome interaction, where we observed a helical structure that is conserved during membrane interaction. The NMR study confirms all the data obtained, providing both the structure of free Temporizin-1 in solution and the way it interacts with micelles. Moreover, Temporizin-1 demonstrated high selectivity against intracellular forms of T. cruzi and exhibited an additive effect when combined with benznidazole, highlighting its promising therapeutic activity. Conclusions: In conclusion, elucidating the mechanism of action of Temporizin-1 is essential for optimizing its structure and improving target selectivity, and driving the rational design of next-generation antimicrobial peptides by applying chemical strategies and delivery system's conjugation.

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Temporizin-1与膜相遇:探测膜插入和破坏机制。
背景/目的:Temporizin-1是由Temporin a、Gramicidin肽和poly-leu序列组合而成的一种杂合抗菌肽,对克氏锥虫具有较强的杀锥虫活性,对哺乳动物细胞具有中等的细胞毒性。在这项研究中,我们研究了肽在与原生动物和真核生物膜相互作用时的作用模式。方法:为此,我们采用脂质体作为仿生模型进行了一系列生物物理实验,同时进行了基于荧光的实验,如脂质混合、膜渗漏以及涉及硫黄素和Laurdan的实验。结果:Temporizin-1对原生动物和真核生物的膜具有较强的溶膜活性,引起膜融合和渗漏,并形成孔。此外,我们还进行了脂质体相互作用的结构研究,在膜相互作用中我们观察到一个保守的螺旋结构。核磁共振研究证实了所获得的所有数据,提供了溶液中游离的Temporizin-1的结构及其与胶束相互作用的方式。此外,Temporizin-1对克氏锥虫细胞内形态表现出高选择性,与苯并硝唑联用时表现出加性效应,表明其具有良好的治疗活性。结论:阐明Temporizin-1的作用机制对优化其结构、提高其靶向选择性、通过化学策略和传递系统的偶联来合理设计新一代抗菌肽具有重要意义。
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来源期刊
Antibiotics-Basel
Antibiotics-Basel Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
7.30
自引率
14.60%
发文量
1547
审稿时长
11 weeks
期刊介绍: Antibiotics (ISSN 2079-6382) is an open access, peer reviewed journal on all aspects of antibiotics. Antibiotics is a multi-disciplinary journal encompassing the general fields of biochemistry, chemistry, genetics, microbiology and pharmacology. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the length of papers.
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