Gupta Kirti, Gupta Ankit, Haider Afreen, Habib Saman
Division of Molecular and Structural Biology,CSIR-Central Drug Research Institute,Lucknow,India.
Parasitology. 2018 Oct;145(12):1600-1612. doi: 10.1017/S0031182018000501. Epub 2018 Apr 12.
Ribosome assembly is critical for translation and regulating the response to cellular events and requires a complex interplay of ribosomal RNA and proteins with assembly factors. We investigated putative participants in the biogenesis of the reduced organellar ribosomes of Plasmodium falciparum and identified homologues of two assembly GTPases - EngA and Obg that were found in mitochondria. Both are indispensable in bacteria and P. berghei EngA is among the 'essential' parasite blood stage proteins identified recently. PfEngA and PfObg1 interacted with parasite mitoribosomes in vivo. GTP stimulated PfEngA interaction with the 50S subunit of Escherichia coli surrogate ribosomes. Although PfObg1-ribosome interaction was independent of nucleotide binding, GTP hydrolysis by PfObg1 was enhanced upon ribosomal association. An additional function for PfObg1 in mitochondrial DNA transactions was suggested by its specific interaction with the parasite mitochondrial genome in vivo. Deletion analysis revealed that the positively-charged OBG (spoOB-associated GTP-binding protein) domain mediates DNA-binding. A role for PfEngA in mitochondrial genotoxic stress response was indicated by its over-expression upon methyl methanesulfonate-induced DNA damage. PfEngA had lower sensitivity to an E. coli EngA inhibitor suggesting differences with bacterial counterparts. Our results show the involvement of two important GTPases in P. falciparum mitochondrial function, with the first confirmed localization of an EngA homologue in eukaryotic mitochondria.
核糖体组装对于翻译以及调节细胞对各种事件的反应至关重要,并且需要核糖体RNA、蛋白质与组装因子之间复杂的相互作用。我们研究了恶性疟原虫线粒体核糖体减少的生物发生过程中的假定参与者,并鉴定出两种组装GTP酶(EngA和Obg)的同源物,它们存在于线粒体中。这两种酶在细菌中都是不可或缺的,并且伯氏疟原虫EngA是最近鉴定出的“必需”寄生虫血液阶段蛋白之一。PfEngA和PfObg1在体内与寄生虫线粒体核糖体相互作用。GTP刺激PfEngA与大肠杆菌替代核糖体的50S亚基相互作用。尽管PfObg1与核糖体的相互作用不依赖于核苷酸结合,但核糖体结合后PfObg1的GTP水解作用增强。PfObg1在体内与寄生虫线粒体基因组的特异性相互作用表明它在线粒体DNA交易中具有额外功能。缺失分析表明,带正电荷的OBG(spoOB相关GTP结合蛋白)结构域介导DNA结合。甲磺酸甲酯诱导的DNA损伤后PfEngA的过表达表明它在线粒体遗传毒性应激反应中发挥作用。PfEngA对大肠杆菌EngA抑制剂的敏感性较低,表明其与细菌对应物存在差异。我们的结果表明两种重要的GTP酶参与了恶性疟原虫的线粒体功能,首次证实了EngA同源物在真核生物线粒体中的定位。