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Biochemical and biophysical combined study of bicarinalin, an ant venom antimicrobial peptide

机译:蚂蚁毒液抗菌肽双原毛虫生物化学和生物物理联合研究

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We have recently characterized bicarinalin as the most abundant peptide from the venom of the ant Tetramorium bicarinatum. This antimicrobial peptide is active against Staphylococcus and Enterobacteriaceae. To further investigate the antimicrobial properties of this cationic and cysteine-free peptide, we have studied its antibacterial, antifungal and antiparasitic activities on a large array of microorganisms. Bicarinalin was active against fifteen microorganisms with minimal inhibitory concentrations ranging from 2 and 25 mol L-1. Cronobacter sakazakii, Salmonella enterica, Candida albicans, Aspergilus niger and Saccharomyces cerevisiae were particularly susceptible to this novel antimicrobial peptide. Resistant strains of Staphylococcus aureus, Pseudomonas aeruginosa and C. albicans were as susceptible as the canonical strains. Interestingly, bicarinalin was also active against the parasite Leishmania infantum with a minimal inhibitory concentrations of 2 mol L-1. The bicarinalin pre-propeptide cDNA sequence has been determined using a combination of degenerated primers with RACE PCR strategy. Interestingly, the N-terminal domain of bicarinalin pre-propeptide exhibited sequence similarity with the pilosulin antimicrobial peptide family previously described in the Myrmecia venoms. Moreover, using SYTOX green uptake assay, we showed that, for all the tested microorganisms, bicarinalin acted through a membrane permeabilization mechanism. Two dimensional-NMR experiments showed that bicarinalin displayed a 10 residue-long a-helical structure flanked by two N- and C-terminal disordered regions. This partially amphipathic helix may explain the membrane permeabilization mechanism of bicarinalin observed in this study. Finally, therapeutic value of bicarinalin was highlighted by its low cytotoxicity against human lymphocytes at bactericidal concentrations and its long half-life in human serum which was around 15 h. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们最近表征了双原毛蛋白,作为来自蚂蚁四卤素的毒液中最丰富的肽。该抗微生物肽对葡萄球菌和肠杆菌菌有活性。为了进一步研究这种阳离子和无胱内肽的抗微生物性质,我们研究了在大量微生物上的抗菌,抗真菌和抗寄生虫活性。双巴素蛋白对十五微生物有效,其抑制浓度为2和25mol L-1。 Cronobacter Sakazakii,沙门氏菌肠,念珠菌,葡萄糖和酿酒酵母酿酒酵母群特别容易受到这种新型抗微生物肽的影响。金黄色葡萄球菌的抗性菌株,假单胞菌铜绿假单胞菌和C. albicans与典型菌株易感。有趣的是,Bicarinalin也对寄生虫Leishmania Infantum进行活性,其抑制浓度为2 mol L-1。使用与种族PCR策略的退化引物的组合确定双原氨酸预肽cDNA序列。有趣的是,Bicarinalin预先肽的N-末端结构域与先前在MyRMecia毒液中描述的比例抗菌肽家族的序列相似性。此外,使用Sytox Green摄影测定,我们表明,对于所有测试的微生物,双法丙氨酸通过膜渗透机制作用。二维NMR实验表明,双基氨酰显示出由两个N-和C末端无序区域侧翼的10个残基长的α-螺旋结构。这种部分两亲螺旋可以解释本研究中观察到的双巴氏菌素的膜透透析机制。最后,通过其低细胞毒性对人淋巴细胞以杀菌浓度的低细胞毒性突出,其在人血清中的长半衰期为大约15小时。 (c)2016年Elsevier Inc.保留所有权利。

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