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首页> 外文期刊>Antimicrobial agents and chemotherapy. >A high-throughput screening assay for inhibitors of bacterial motility identifies a novel inhibitor of the Na+-driven flagellar motor and virulence gene expression in Vibrio cholerae.
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A high-throughput screening assay for inhibitors of bacterial motility identifies a novel inhibitor of the Na+-driven flagellar motor and virulence gene expression in Vibrio cholerae.

机译:细菌运动性抑制剂的高通量筛选测定方法可鉴定霍乱弧菌中Na +驱动的鞭毛运动和毒力基因表达的新型抑制剂。

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摘要

Numerous bacterial pathogens, particularly those that colonize fast-flow areas in the bladder and gastrointestinal tract, require motility to establish infection and spread beyond the initially colonized tissue. Vibrio cholerae strains of serogroups O1 and O139, the causative agents of the diarrheal illness cholera, express a single polar flagellum powered by sodium motive force and require motility to colonize and spread along the small intestine. Therefore, motility may be an attractive target for small molecules that can prevent and/or block the infective process. In this study, we describe a high-throughput screening (HTS) assay to identify small molecules that selectively inhibit bacterial motility. The HTS assay was used to screen an approximately 8,000-compound structurally diverse chemical library for inhibitors of V. cholerae motility. The screen identified a group of quinazoline-2,4-diamino analogs that completely suppressed motility without affecting the growth rate in broth. A further study on the effects of one analog, designated Q24DA, showed that it induces a flagellated but nonmotile (Mot(-)) phenotype and is specific for the Na(+)-driven flagellar motor of pathogenic Vibrio species. A mutation conferring phenamil-resistant motility did not eliminate inhibition of motility by Q24DA. Q24DA diminished the expression of cholera toxin and toxin-coregulated pilus as well as biofilm formation and fluid secretion in the rabbit ileal loop model. Furthermore, treatment of V. cholerae with Q24DA impacted additional phenotypes linked to Na(+) bioenergetics, such as the function of the primary Na(+) pump, Nqr, and susceptibility to fluoroquinolones. The above results clearly show that the described HTS assay is capable of identifying small molecules that specifically block bacterial motility. New inhibitors such as Q24DA may be instrumental in probing the molecular architecture of the Na(+)-driven polar flagellar motor and in studying the role of motility in the expression of other virulence factors.
机译:许多细菌性病原体,特别是那些在膀胱和胃肠道中快速流动的区域定居的细菌,需要运动来建立感染并传播到最初定殖的组织之外。腹泻病霍乱的病原体O1和O139血清群的霍乱弧菌菌株表达具有钠动力的单极鞭毛,并需要运动才能在小肠内定殖和传播。因此,运动性可能是可以预防和/或阻止感染过程的小分子的有吸引力的目标。在这项研究中,我们描述了一种高通量筛选(HTS)分析法,以鉴定选择性抑制细菌运动性的小分子。 HTS分析用于筛选约8,000种化合物的结构多样的化学文库,用于霍乱弧菌运动性抑制剂。筛查确定了一组喹唑啉-2,4-二氨基类似物,它们完全抑制了运动性,却不影响肉汤的生长速率。对一种称为Q24DA的类似物的影响的进一步研究表明,它诱导鞭毛但不运动的(Mot(-))表型,并且对致病性弧菌物种的Na(+)驱动的鞭毛马达具有特异性。赋予苯胺抗性运动的突变不能消除Q24DA对运动的抑制。 Q24DA减少了兔回肠loop模型中霍乱毒素和毒素结合菌毛的表达以及生物膜形成和液体分泌。此外,用Q24DA治疗霍乱弧菌影响了与Na(+)生物能学相关的其他表型,例如主要Na(+)泵的功能,Nqr和对氟喹诺酮类药物的敏感性。上述结果清楚地表明,所述的HTS测定法能够鉴定特异性阻断细菌运动性的小分子。新的抑制剂,例如Q24DA,可能在探究Na(+)驱动的极鞭毛运动分子的分子结构以及研究运动性在其他毒力因子表达中的作用中可能发挥了作用。

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