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Identity of a Plasmodium lactate/H+ symporter structurally unrelated to human transporters

机译:乳酸疟原虫/ H +同向转运蛋白的结构与人类转运蛋白无关

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Maintenance of a high glycolytic flow rate is critical for the rapid growth and virulence of malarial parasites. The parasites release two moles of lactic acid per mole of glucose as the anaerobic end product. However, the molecular identity of the Plasmodium lactate transporter is unknown. Here we show that a member of the microbial formate-nitrite transporter family, PfFNT, acts as a lactate/proton symporter in Plasmodium falciparum. Besides L-lactate, PfFNT transports physiologically relevant D-lactate, as well as pyruvate, acetate and formate, and is inhibited by the antiplasmodial compounds phloretin, furosemide and cinnamate derivatives, but not by p-chloromercuribenzene sulfonate (pCMBS). Our data on PfFNT monocarboxylate transport are consistent with those obtained with living parasites. Moreover, PfFNT is the only transporter of the plasmodial glycolytic pathway for which structure information is available from crystals of homologous proteins, rendering it amenable to further evaluation as a novel antimalarial drug target.
机译:维持高的糖酵解流速对于疟疾寄生虫的快速生长和毒力至关重要。寄生虫每摩尔葡萄糖释放两摩尔乳酸作为厌氧终产物。但是,乳酸疟原虫转运蛋白的分子身份是未知的。在这里,我们显示了微生物甲酸亚硝酸盐转运蛋白家族成员PfFNT在恶性疟原虫中充当乳酸/质子同向转运蛋白。除L-乳酸外,PfFNT还转运生理相关的D-乳酸以及丙酮酸,乙酸盐和甲酸盐,并被抗疟原虫化合物百洛汀,呋塞米和肉桂酸酯衍生物抑制,但不受对氯巯基苯磺酸盐(pCMBS)的抑制。我们关于PfFNT单羧酸盐转运的数据与活寄生虫获得的数据一致。而且,PfFNT是纤溶酶解途径的唯一转运蛋白,其结构信息可从同源蛋白质的晶体中获得,使其有可能作为新的抗疟药靶标进行进一步评估。

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