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Antibacterial Antifungal Anticancer Activities and Structural Bioinformatics Analysis of Six Naturally Occurring Temporins

机译:六种天然存在的Temporins的抗菌抗真菌抗癌活性和结构生物信息学分析

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摘要

Antimicrobial peptides are a special class of natural products with potential applications as novel therapeutics. This study focuses on six temporins (four with no activity data and two as positive controls). Using synthetic peptides, we report antibacterial, antifungal, and anticancer activities of temporins-CPa, CPb, 1Ga, 1Oc, 1Ola, and 1SPa. While temporin-1Ga and temporin-1OLa showed higher antifungal and anticancer activity, most of these peptides were active primarily against Gram-positive bacteria. Temporin-1OLa, with the highest cell selectivity index, could preferentially kill methicillin-resistant Staphylococcus aureus (MRSA), consistent with a reduced hemolysis in the presence of bacteria. Mechanistically, temporin-1OLa rapidly killed MRSA by damaging bacterial membranes. Using micelles as a membrane-mimetic model, we determined the three-dimensional structure of temporin-1OLa by NMR spectroscopy. The peptide adopted a two-domain structure where a hydrophobic patch is followed by a classic amphipathic helix covering residues P3-I12. Such a structure is responsible for anti-biofilm ability in vitro and in vivo protection of wax moths Galleria mellonella from staphylococcal infection. Finally, our bioinformatic analysis leads to a classification of temporins into six types and confers significance to this NMR structure since temporin-1OLa shares a sequence model with 62% of temporins. Collectively, our results indicate the potential of temporin-1OLa as a new anti-MRSA compound, which shows an even better anti-biofilm capability in combination with linezolid.
机译:抗菌肽是一类特殊的天然产物,具有作为新型疗法的潜在应用。这项研究的重点是六个te​​mporins(四个没有活动数据,两个作为阳性对照)。我们使用合成肽报告了temporins-CPa,CPb,1Ga,1Oc,1Ola和1SPa的抗菌,抗真菌和抗癌活性。尽管temporin-1Ga和temporin-1OLa表现出更高的抗真菌和抗癌活性,但其中大多数肽主要对革兰氏阳性细菌具有活性。具有最高细胞选择性指数的Temporin-1OLa可以优先杀死耐甲氧西林的金黄色葡萄球菌(MRSA),这与细菌存在时溶血减少有关。从机理上讲,temporin-1OLa通过破坏细菌膜而迅速杀死MRSA。使用胶束作为膜模拟模型,我们通过NMR光谱确定了temporin-1OLa的三维结构。该肽采用了两个结构域的结构,其中疏水膜片后面是经典的两亲螺旋,覆盖残基P3-I12。这种结构负责在体外和体内保护蜡蛾免遭葡萄球菌感染的抗生物膜能力。最后,由于temporin-1OLa与62%的temporins共享序列模型,因此我们的生物信息学分析将temporins分为六种类型,并赋予该NMR结构以重要的意义。总的来说,我们的结果表明temporin-1OLa作为一种新型抗MRSA化合物的潜力,与利奈唑胺联合使用时显示出更好的抗生物膜能力。

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