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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Potent dual inhibitors of Plasmodium falciparum M1 and M17 aminopeptidases through optimization of S1 pocket interactions
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Potent dual inhibitors of Plasmodium falciparum M1 and M17 aminopeptidases through optimization of S1 pocket interactions

机译:通过优化S1口袋相互作用,恶性疟原虫M1和M17氨基肽酶的有效双重抑制剂

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摘要

Malaria remains a global health problem, and though international efforts for treatment and eradication have made some headway, the emergence of drug-resistant parasites threatens this progress. Antimalarial therapeutics acting via novel mechanisms are urgently required. Plasmodium falciparum M1 and M17 are neutral aminopeptidases which are essential for parasite growth and development. Previous work in our group has identified inhibitors capable of dual inhibition of PfA-M1 and PfA-M17, and revealed further regions within the protease S1 pockets that could be exploited in the development of ligands with improved inhibitory activity. Herein, we report the structure-based design and synthesis of novel hydroxamic acid analogues that are capable of potent inhibition of both PfA-M1 and PfA-M17. Furthermore, the developed compounds potently inhibit Pf growth in culture, including the multi-drug resistant strain Dd2. The ongoing development of dual PIA-M1/PfA-M17 inhibitors continues to be an attractive strategy for the design of novel antimalarial therapeutics. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:疟疾仍然是一个全球性的健康问题,尽管国际上在治疗和根除方面的努力取得了一些进展,但耐药性寄生虫的出现威胁着这一进展。迫切需要通过新机制起作用的抗疟药。恶性疟原虫M1和M17是中性氨基肽酶,对寄生虫的生长和发育至关重要。我们小组以前的工作已经确定了能够双重抑制PfA-M1和PfA-M17的抑制剂,并揭示了蛋白酶S1口袋中的其他区域,可用于开发具有改善抑制活性的配体。在这里,我们报告基于结构的设计和合成的新型异羟肟酸类似物,能够有效抑制PfA-M1和PfA-M17。此外,已开发的化合物可有效抑制培养物中Pf的生长,包括耐多药菌株Dd2。 PIA-M1 / PfA-M17双重抑制剂的持续开发仍然是设计新型抗疟疾治疗剂的有吸引力的策略。 (C)2016 Elsevier Masson SAS。版权所有。

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