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Micelle bound structure and DNA interaction of brevinin-2-related peptide, an antimicrobial peptide derived from frog skin

机译:源自蛙皮的抗菌肽brevinin-2相关肽的胶束结合结构和DNA相互作用

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Brevinin-2-related peptide (BR-II), a novel antimicrobial peptide isolated from the skin of frog, Rana septentrionalis, shows a broad spectrum of antimicrobial activity with low haemolytic activity. It has also been shown to have antiviral activity, specifically to protect cells from infection by HIV-1. To understand the active conformation of the BR-II peptide in membranes, we have investigated the interaction of BR-II with the prokaryotic and eukaryotic membrane-mimetic micelles such as sodium dodecylsulfate (SDS) and dodecylphosphocholine (DPC), respectively. The interactions were studied using fluorescence and circular dichroism (CD) spectroscopy. Fluorescence experiments revealed that the N-terminus tryptophan residue of BR-II interactswith the hydrophobic core of the membrane mimickingmicelles. The CD results suggest that interactions with membrane-mimeticmicelles induce an α-helix conformation in BR-II. We have also determined the solution structures of BR-II in DPC and SDS micelles using NMR spectroscopy. The structural comparison of BR-II in the presence of SDS and DPC micelles showed significant conformational changes in the residues connecting the N-terminus and C-terminus helices. The ability of BR-II to bind DNA was elucidated by agarose gel retardation and fluorescence experiments. The structural differences of BR-II in zwitterionic versus anionic membrane mimics and the DNA binding ability of BR-II collectively contribute to the general understanding of the pharmacological specificity of this peptide towards prokaryotic and eukaryotic membranes and provide insights into its overall antimicrobial mechanism.
机译:Brevinin-2相关肽(BR-II)是一种从青蛙Rana septentrionalis蛙皮中分离出的新型抗菌肽,其抗菌活性广,溶血活性低。还显示出它具有抗病毒活性,特别是保护细胞免受HIV-1的感染。为了了解BR-II肽在膜中的活性构象,我们研究了BR-II与原核和真核膜模拟微团(例如十二烷基硫酸钠(SDS)和十二烷基磷酸胆碱(DPC))的相互作用。使用荧光和圆二色性(CD)光谱研究了相互作用。荧光实验表明,BR-II的N端色氨酸残基与膜微胶束的疏水核相互作用。 CD结果表明与膜模拟胶束的相互作用在BR-II中诱导α-螺旋构象。我们还使用NMR光谱法确定了DPC和SDS胶束中BR-II的溶液结构。在存在SDS和DPC胶束的情况下,BR-II的结构比较表明,连接N端和C端螺旋的残基具有显着的构象变化。通过琼脂糖凝胶阻滞和荧光实验阐明了BR-II结合DNA的能力。两性离子和阴离子膜模拟物中BR-II的结构差异以及BR-II的DNA结合能力共同有助于对该肽对原核和真核膜的药理学特异性的一般理解,并提供对其整体抗菌机制的见解。

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