Molecular Interactions of the Antimicrobial Peptide Tritrpticin with Mixed Nanoaggregates: A Fluorescence Spectroscopy Study.

IF 1.1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Kaio César Antunes Rocha, Maria Carolina Oliveira de Arruda Brasil, Eduardo Maffud Cilli, Luiz Carlos Salay
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引用次数: 0

Abstract

Introduction: Tritrpticin (TRP3) is a peptide belonging to the cathelicidin family and has a broad spectrum of antimicrobial activity. However, this class of biomolecules can be easily degraded in the body, making it necessary to use an efficient transport system. The ability to form stable nanostructures from the interaction of glycyrrhizin saponin with the pluronic polymer F127 was demonstrated, forming mixed biopolymeric micelles, highly promising as drug carriers.

Objective: The present work sought to understand the physicochemical interaction of the antimicrobial peptide TRP3 with the mixed polymeric micelle made from pluronic F127 and the saponin glycyrrhizin.

Methods: The interaction of tritrpticin with mixed nanostructured micelles was evaluated through fluorescence spectroscopy and fluorescence quenching with acrylamide. The experiments were performed at room temperature (25 ± 1°C), adopting an excitation wavelength set to 280 nm and emission between 300 and 500 nm, with a slit of 5 nm.

Results: The interaction of the cationic peptide tritrpticin with the mixed biopolymeric micelles was observed through the blue shift of the fluorescence emission to shorter wavelengths, proving the change of tryptophan to a more hydrophobic environment. Through the fluorescence suppression technique, it was possible to indicate the location of the peptide in the mixed micelles, proving tritrpticin to be partially inserted inside them.

Conclusion: It was concluded that tritrpticin interacted with mixed nanostructured micelles, forming a promising system for biotechnological applications.

抗菌肽三曲皮肽与混合纳米聚集体的分子相互作用:荧光光谱研究。
Tritrpticin (TRP3)是一种属于抗菌肽家族的肽,具有广谱的抗菌活性。然而,这类生物分子在体内很容易降解,因此必须使用有效的运输系统。甘草酸皂苷与pluronic聚合物F127相互作用形成稳定的纳米结构,形成混合的生物聚合物胶束,作为药物载体具有很高的前景。目的:研究抗菌肽TRP3与pluronic F127与甘草酸皂苷混合聚合物胶束的理化相互作用。方法:采用荧光光谱法和丙烯酰胺荧光猝灭法,研究了三曲霉肽与混合纳米结构胶束的相互作用。实验在室温(25±1℃)下进行,激发波长为280 nm,发射波长为300 ~ 500 nm,狭缝为5 nm。结果:阳离子多肽tritrpticin与混合生物聚合物胶束的相互作用通过荧光发射向短波蓝移观察到,证明色氨酸向更疏水的环境变化。通过荧光抑制技术,可以指示肽在混合胶束中的位置,证明三曲匹汀部分插入其中。结论:三曲皮菌素与混合纳米结构胶束相互作用,形成了一种有前景的生物技术应用体系。
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来源期刊
Protein and Peptide Letters
Protein and Peptide Letters 生物-生化与分子生物学
CiteScore
2.90
自引率
0.00%
发文量
98
审稿时长
2 months
期刊介绍: Protein & Peptide Letters publishes letters, original research papers, mini-reviews and guest edited issues in all important aspects of protein and peptide research, including structural studies, advances in recombinant expression, function, synthesis, enzymology, immunology, molecular modeling, and drug design. Manuscripts must have a significant element of novelty, timeliness and urgency that merit rapid publication. Reports of crystallization and preliminary structure determination of biologically important proteins are considered only if they include significant new approaches or deal with proteins of immediate importance, and preliminary structure determinations of biologically important proteins. Purely theoretical/review papers should provide new insight into the principles of protein/peptide structure and function. Manuscripts describing computational work should include some experimental data to provide confirmation of the results of calculations. Protein & Peptide Letters focuses on: Structure Studies Advances in Recombinant Expression Drug Design Chemical Synthesis Function Pharmacology Enzymology Conformational Analysis Immunology Biotechnology Protein Engineering Protein Folding Sequencing Molecular Recognition Purification and Analysis
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