首页> 美国卫生研究院文献>Frontiers in Cellular and Infection Microbiology >The 9H-Fluoren Vinyl Ether Derivative SAM461 Inhibits Bacterial Luciferase Activity and Protects Artemia franciscana From Luminescent Vibriosis
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The 9H-Fluoren Vinyl Ether Derivative SAM461 Inhibits Bacterial Luciferase Activity and Protects Artemia franciscana From Luminescent Vibriosis

机译:9H氟乙烯醚衍生物SAM461抑制细菌萤光素酶活性并保护卤虫弗朗西斯卡纳免受发光性弧菌病

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摘要

Vibrio campbellii is a major pathogen in aquaculture. It is a causative agent of the so-called “luminescent vibriosis,” a life-threatening condition caused by bioluminescent Vibrio spp. that often involves mass mortality of farmed shrimps. The emergence of multidrug resistant Vibrio strains raises a concern and poses a challenge for the treatment of this infection in the coming years. Inhibition of bacterial cell-to-cell communication or quorum sensing (QS) has been proposed as an alternative to antibiotic therapies. Aiming to identify novel QS disruptors, the 9H-fluroen-9yl vinyl ether derivative SAM461 was found to thwart V. campbellii bioluminescence, a QS-regulated phenotype. Phenotypic and gene expression analyses revealed, however, that the mode of action of SAM461 was unrelated to QS inhibition. Further evaluation with purified Vibrio fischeri and NanoLuc luciferases revealed enzymatic inhibition at micromolar concentrations. In silico analysis by molecular docking suggested binding of SAM461 in the active site cavities of both luciferase enzymes. Subsequent in vivo testing of SAM461 with gnotobiotic Artemia franciscana nauplii demonstrated naupliar protection against V. campbellii infection at low micromolar concentrations. Taken together, these findings suggest that suppression of luciferase activity could constitute a novel paradigm in the development of alternative anti-infective chemotherapies against luminescent vibriosis, and pave the ground for the chemical synthesis and biological characterization of derivatives with promising antimicrobial prospects.
机译:坎贝尔弧菌是水产养殖中的主要病原体。它是所谓的“发光弧菌病”的病原体,它是由生物发光弧菌引起的危及生命的疾病。通常涉及养殖虾的大量死亡。多药耐药弧菌菌株的出现引起了人们的关注,并在未来几年中对该感染的治疗提出了挑战。已经提出抑制细菌细胞间通讯或群体感应(QS)作为抗生素治疗的替代方法。为了鉴定新型的QS干扰物,发现9H-fluroen-9yl乙烯基醚衍生物SAM461可以阻止QS调节表型的坎贝尔弧菌生物发光。但是,表型和基因表达分析表明,SAM461的作用方式与QS抑制作用无关。纯化的费氏弧菌和NanoLuc荧光素酶的进一步评估显示了微摩尔浓度的酶促抑制作用。通过分子对接的计算机分析表明,SAM461结合在两种萤光素酶的活性位点内。随后对带有致生性Artemia franciscana幼虫的SAM461进行体内测试,证明了在低微摩尔浓度下,幼虫对坎贝氏弧菌的保护作用。综上所述,这些发现表明,萤光素酶活性的抑制可构成针对发光弧菌病的替代性抗感染化学疗法发展的新范例,并为具有希望的抗菌前景的衍生物的化学合成和生物学表征奠定基础。

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