抗疟疾药物靶点脯氨酸- trna合成酶的结构与功能分析。

Vitul Jain, Haruhisa Kikuchi, Yoshiteru Oshima, Amit Sharma, Manickam Yogavel
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引用次数: 36

摘要

氨基酰基- trna合成酶(aaRSs)驱动细胞中的蛋白质翻译,因此它们是生命中必不可少的酶。抑制这些酶可以通过阻止蛋白质翻译来阻止生物体的生长。因此,从开发抗感染药物的角度来看,小分子靶向aaRS活性位点是一条有吸引力的途径。温弗金及其衍生物如卤弗金酮(HF)具有抑制疟原虫恶性疟原虫脯氨酸- trna合成酶的作用。在这里,我们提供了恶性疟原虫脯氨酸- trna合成酶(PfPRS)的功能和晶体学数据。利用免疫荧光数据,我们发现PfPRS只存在于无性血期寄生虫的细胞质中。在ATP类似物存在或不存在的情况下,抑制剂HF与PfPRS以非竞争性结合模式强烈相互作用。有趣的是,构成二聚体PfPRS的两种单体在其活性位点区域显示出明显不同的构象。本文提出的结构分析为开发热菌衍生物提供了一个框架,可以为开发新的抗疟疾药物提供种子。
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Structural and functional analysis of the anti-malarial drug target prolyl-tRNA synthetase.

Aminoacyl-tRNA synthetases (aaRSs) drive protein translation in cells and hence these are essential enzymes across life. Inhibition of these enzymes can halt growth of an organism by stalling protein translation. Therefore, small molecule targeting of aaRS active sites is an attractive avenue from the perspective of developing anti-infectives. Febrifugine and its derivatives like halofuginone (HF) are known to inhibit prolyl-tRNA synthetase of malaria parasite Plasmodium falciparum. Here, we present functional and crystallographic data on P. falciparum prolyl-tRNA synthetase (PfPRS). Using immunofluorescence data, we show that PfPRS is exclusively resident in the parasite cytoplasm within asexual blood stage parasites. The inhibitor HF interacts strongly with PfPRS in a non-competitive binding mode in presence or absence of ATP analog. Intriguingly, the two monomers that constitute dimeric PfPRS display significantly different conformations in their active site regions. The structural analyses presented here provide a framework for development of febrifugine derivatives that can seed development of new anti-malarials.

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