Drug Research Program, Division of Pharmaceutical Biosciences, Faculty of Pharmacy, University of Helsinki, P.O. Box 56, FI-00014 Helsinki, Finland.
European Screening Centre, Biocity Scotland, Newhouse ML1 5UH, UK.
Int J Mol Sci. 2019 Jun 25;20(12):3112. doi: 10.3390/ijms20123112.
Since quorum sensing (QS) is linked to the establishment of bacterial infection, its inactivation represents one of the newest strategies to fight bacterial pathogens. LsrK is a kinase playing a key role in the processing of autoinducer-2 (AI-2), a quorum-sensing mediator in gut enteric bacteria. Inhibition of LsrK might thus impair the quorum-sensing cascade and consequently reduce bacterial pathogenicity. Aiming for the development of a target-based assay for the discovery of LsrK inhibitors, we evaluated different assay set-ups based on ATP detection and optimized an automation-compatible method for the high-throughput screening of chemical libraries. The assay was then used to perform the screening of a 2000-compound library, which provided 12 active compounds with an IC ≤ 10 µM confirming the effectiveness and sensitivity of our assay. Follow-up studies on the positive hits led to the identification of two compounds, harpagoside and rosolic acid, active in a cell-based AI-2 QS interference assay, which are at the moment the most promising candidates for the development of a new class of antivirulence agents based on LsrK inhibition.
由于群体感应(QS)与细菌感染的建立有关,因此其失活代表了对抗细菌病原体的最新策略之一。LsrK 是一种激酶,在肠内细菌中自动诱导物-2(AI-2)的加工中起着关键作用,AI-2 是一种群体感应介质。因此,抑制 LsrK 可能会破坏群体感应级联反应,从而降低细菌的致病性。为了开发基于靶标的 LsrK 抑制剂发现测定法,我们评估了基于 ATP 检测的不同测定法设置,并优化了一种适用于高通量筛选化学文库的自动化兼容方法。然后,该测定法用于对 2000 种化合物文库进行筛选,提供了 12 种 IC≤10µM 的活性化合物,证实了我们测定法的有效性和敏感性。对阳性命中的后续研究导致鉴定出两种化合物,熊果酸和罗斯酸,在基于细胞的 AI-2 QS 干扰测定法中具有活性,它们目前是基于 LsrK 抑制开发新型抗毒剂的最有前途的候选物。