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Parasite Mitochondria as a Target of Chemotherapy Inhibitory Effect of Licochalcone A on the Plasmodium falciparum Respiratory Chain

机译:寄生虫线粒体作为Licochalcone A对疟原虫呼吸链的化疗抑制作用的目标

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Parasites have exploited unique energy metabolic pathways as adaptations to the natural host habitat. In fact, the respiratory systems of parasites typically show greater diversity in electron transfer pathways than do those of host animals. These unique aspects of parasite mitochondria and related enzymes may represent promising targets for chemotherapy. Natural products have been recognized as a source of the candidates of the specific inhibitors for such parasite respiratory chains. Chalcones was recently evaluated for its antimalarial activity in vitro and in vivo. However, its target is still unclear in malaria parasites. In this study, we investigated that licochalcone A inhibited the bc_1 complex (ubiquinol-cytochrome c reductase) as well as complex H (succinate ubiquinone reductase, SQR) of Plasmodium falciparum mitochondria. In particular, licochalcone A inhibits bc_1 complex activity at very low concentrations. Because the property of the P. falciparum bc_1 complex is different from that of the mammalian host, chalcones would be a promising candidate for a new antimalarial drug.
机译:寄生虫已经利用独特的能量代谢途径作为对天然宿主栖息地的适应。事实上,寄生虫的呼吸系统通常在电子转移途径中显示出比宿主动物的呼吸途径更大的多样性。寄生虫线粒体和相关酶的这些独特的方面可能代表化疗的有前途的靶标。天然产品已被认为是该寄生虫呼吸道链的特异性抑制剂的候选者的来源。最近在体外和体内评估其抗疟疾活性的Chalcones。然而,它的目标仍然不清楚疟疾寄生虫。在这项研究中,我们研究了Licchochalcone A抑制了BC_1络合物(Ubiquinol-细胞色素C还原酶)以及疟原虫线粒体的复杂H(琥珀酸盐泛酮还原酶,SQR)。特别地,Licochalcone A在非常低浓度下抑制BC_1复合活性。因为p. falciparum bc_1复合物的性质与哺乳动物宿主的性质不同,因此Chalcones将是一种新的抗疟药剂的有希望的候选者。

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