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Dimerization of Arginyl-tRNA Synthetase by Free Heme Drives Its Inactivation in Plasmodium falciparum

机译:游离血红素对精氨酰-tRNa合成酶的二聚化驱使其在恶性疟原虫中失活

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摘要

Excess cellular heme is toxic, and malaria parasites regulate its levels during hemoglobin digestion. Aminoacyl-tRNA synthetases are ubiquitous enzymes, and of these, arginyl-tRNA synthetase (RRS) is unique as its enzymatic product of charged tRNA is required for protein synthesis and degradation. We show that Plasmodium falciparum arginyl-tRNA synthetase (PfRRS) is an active, cytosolic, and monomeric enzyme. Its high-resolution crystal structure highlights critical structural differences with the human enzyme. We further show that hemin binds to and inhibits the aminoacylation activity of PfRRS. Hemin induces a dimeric form of PfRRS that is thus rendered enzymatically dead as it is unable to recognize its cognate tRNAarg. Excessive hemin in chloroquine-treated malaria parasites results in significantly reduced charged tRNAarg levels, thus suggesting deceleration of protein synthesis. These data together suggest that the inhibition of Plasmodium falciparum arginyl-tRNA synthetase can now be synergized with existing antimalarials for more potent drug cocktails against malaria parasites.
机译:过量的细胞血红素是有毒的,疟原虫血红蛋白消化过程中调节其水平。氨酰-tRNA合成是普遍存在的酶,和这些的,因为所需的蛋白质合成和降解其带电的tRNA的酶产物精氨酰-tRNA合成酶(RRS)是唯一的。我们表明,恶性疟原虫精氨酰-tRNA合成酶(PfRRS)是活性的,细胞溶质,和单体酶。与人类酶的高分辨率晶体结构亮点临界结构差异。进一步的研究表明血红素结合并抑制PfRRS的氨基酰化活性。血红素诱导PfRRS的二聚体形式由此所呈现酶死因为它无法识别其同源tRNAarg。氯高铁血红素过度在显著降低带电tRNAarg水平氯喹处理过的疟原虫的结果,从而表明蛋白质合成的减速。这些数据一起表明,恶性疟原虫精氨酰tRNA合成酶的抑制现在可以针对疟原虫更有效的药物鸡尾酒现有抗疟药进行协同。

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