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In silico characterization of Plasmodium falciparum purinergic receptor: a novel chemotherapeutic target

机译:恶性疟原虫嘌呤能受体的计算机表征:一种新型化学治疗靶标

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摘要

Serpentine receptors with G-protein coupled receptor like seven transmembrane (7 TM) topology are identified in Plasmodium. A class of 7 TM receptors known as purinergic receptors binds to purines such as ADP, ATP and UTP and mediates important physiological functions including regulation of calcium signaling. Here we performed in silico analysis of Plasmodium falciparum serpentine receptors and found that one of the P. falciparum serpentine receptors, PfSR12 possess nucleotide binding consensus P-loop sequence in addition to seven transmembrane domains. The presence of conserved seven transmembrane domains and a consensus nucleotide binding sequence (P-loop) suggest that PfSR12 is a putative purinergic receptor. On further analysis using docking programmes we found four active binding residues Asn149, Lys150, Asn151 and Gly152 in P-loop of PfSR12, interact with ATP. This work gives insights into the interactions between putative purinergic receptor PfSR12 and its ligand ATP which can be explored in structure based drug designing against malaria.
机译:在疟原虫中鉴定出具有七蛋白跨膜(7 TM)拓扑结构的G蛋白偶联受体的蛇形受体。一类称为嘌呤能受体的7 TM受体与嘌呤(例如ADP,ATP和UTP)结合,并介导重要的生理功能,包括调节钙信号传导。在这里,我们对恶性疟原虫的蛇纹石受体进行了计算机分析,发现恶性疟原虫的蛇纹石受体之一,PfSR12除七个跨膜结构域外,还具有核苷酸结合共有的P环序列。保守的七个跨膜结构域和一个共有核苷酸结合序列(P环)的存在表明PfSR12是推定的嘌呤能受体。在使用对接程序进行进一步分析时,我们发现PfSR12的P环中有四个活性结合残基Asn149,Lys150,Asn151和Gly152与ATP相互作用。这项工作提供了对假定的嘌呤能受体PfSR12与它的配体ATP之间相互作用的见解,可以在基于结构的抗疟疾药物设计中进行探索。

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