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A comprehensive model of purine uptake by the malaria parasite Plasmodium falciparum: identification of four purine transport activities in intraerythrocytic parasites

机译:疟原虫恶性疟原虫摄取嘌呤的综合模型:鉴定红细胞内寄生虫的四种嘌呤转运活动

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摘要

Plasmodium falciparum is incapable of de novo purine biosynthesis, and is absolutely dependent on transporters to salvage purines from the environment. Only one low-affinity adenosine transporter has been characterized to date. In the present study we report a comprehensive study of purine nucleobase and nucleoside transport by intraerythrocytic P. falciparum parasites. Isolated trophozoites expressed (i) a high-affinity hypoxanthine transporter with a secondary capacity for purine nucleosides, (ii) a separate high-affinity transporter for adenine, (iii) a low-affinity adenosine transporter, and (iv) a low-affinity/high-capacity adenine carrier. Hypoxanthine was taken up with 12-fold higher efficiency than adenosine. Using a parasite clone with a disrupted PfNT1 (P. falciparum nucleoside transporter 1) gene we found that the high-affinity hypoxanthineucleoside transport activity was completely abolished, whereas the low-affinity adenosine transport activity was unchanged. Adenine transport was increased, presumably to partly compensate for the loss of the high-affinity hypoxanthine transporter. We thus propose a model for purine salvage in P falciparum, based on the highly efficient uptake of hypoxanthine by PfNT1 and a high capacity for purine nucleoside uptake by a lower affinity carrier.
机译:恶性疟原虫不能进行从头进行嘌呤的生物合成,并且绝对依赖转运蛋白从环境中拯救嘌呤。迄今为止,仅表征了一种低亲和力腺苷转运蛋白。在本研究中,我们报告了由红细胞内恶性疟原虫寄生虫对嘌呤核苷碱基和核苷转运的全面研究。分离的滋养体表达(i)具有嘌呤核苷二级能力的高亲和力次黄嘌呤转运蛋白,(ii)腺嘌呤的单独高亲和力转运蛋白,(iii)低亲和力腺苷转运蛋白,和(iv)低亲和力/高容量腺嘌呤载体。次黄嘌呤的吸收效率是腺苷的12倍。使用具有破坏的PfNT1(恶性疟原虫核苷转运蛋白1)基因的寄生虫克隆,我们发现高亲和力次黄嘌呤/核苷转运活性被完全消除,而低亲和力腺苷转运活性未改变。腺嘌呤转运增加,大概部分补偿了高亲和力次黄嘌呤转运蛋白的损失。因此,我们基于恶性疟原虫PfNT1对次黄嘌呤的高效吸收和较低亲和力载体对嘌呤核苷的高吸收能力,提出了恶性疟原虫的嘌呤挽救模型。

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