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High-throughput screening of the Plasmodium falciparum cGMP-dependent protein kinase identified a thiazole scaffold which kills erythrocytic and sexual stage parasites

机译:高通量恶性疟原虫cGMP依赖性蛋白激酶的高通量筛选确定了噻唑支架,该支架可杀死红细胞和性阶段的寄生虫

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Antimalarial drug resistance compels the quest for new compounds that target alternative pathways to current drugs. The Plasmodium cyclic GMP-dependent protein kinase (PKG) has essential functions in all of the major life cycle developmental stages. An imidazopyridine PKG inhibitor scaffold was previously shown to clear P. falciparum infection in a rodent model in vivo and blocked transmission to mosquitoes providing proof of concept for this target. To find new classes of PKG inhibitors to serve as alternative chemical starting points, we performed a high-throughput screen of the GSK Full Diversity Collection using recombinant P. falciparum PKG. We developed a robust enzymatic assay in a 1536-well plate format. Promising compounds were then tested for activity against P. falciparum asexual blood stage growth, selectivity and cytotoxicity. By using a scoring system we selected the 66 most promising PKG inhibitors (comprising nine clusters and seven singletons). Among these, thiazoles were the most potent scaffold with mid-nanomolar activity on P. falciparum blood stage and gamete development. Using Kinobeads profiling we identified additional P. falciparum protein kinases targeted by the thiazoles that mediate a faster speed of the kill than PKG-selective compounds. This scaffold represents a promising starting point to develop a new antimalarial.
机译:抗疟药耐药性迫使人们寻求针对当前药物替代途径的新化合物。疟原虫环状GMP依赖性蛋白激酶(PKG)在所有主要生命周期发育阶段均具有重要功能。先前显示咪唑并吡啶PKG抑制剂支架可在啮齿动物模型中清除恶性疟原虫感染,并阻止向蚊子的传播,从而为该靶标提供了概念证明。为了找到新的PKG抑制剂类作为替代化学起点,我们使用重组恶性疟原虫PKG对GSK全多样性馆藏进行了高通量筛选。我们以1536孔板的形式开发了强大的酶促测定方法。然后测试有前途的化合物对恶性疟原虫无性血液阶段生长,选择性和细胞毒性的活性。通过使用评分系统,我们选择了66种最有前景的PKG抑制剂(包含9个簇和7个单例)。其中,噻唑是最有效的支架,对恶性疟原虫的血液阶段和配子发育具有中等纳摩尔活性。使用Kinobeads分析,我们发现了噻唑靶向的其他恶性疟原虫蛋白激酶,其介导的杀灭速度比PKG选择性化合物快。该支架代表了开发新抗疟药的有希望的起点。

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