Nagaraj Viswanathan Arun, Prasad Dasari, Arumugam Rajavel, Rangarajan Pundi N, Padmanaban Govindarajan
Department of Biochemistry, Indian Institute of Science, Bangalore, India.
Parasitol Int. 2010 Jun;59(2):121-7. doi: 10.1016/j.parint.2009.12.001. Epub 2009 Dec 13.
A unique hybrid pathway has been proposed for de novo heme biosynthesis in Plasmodium falciparum involving three different compartments of the parasite, namely mitochondrion, apicoplast and cytosol. While parasite mitochondrion and apicoplast have been shown to harbor key enzymes of the pathway, there has been no experimental evidence for the involvement of parasite cytosol in heme biosynthesis. In this study, a recombinant P. falciparum coproporphyrinogen III oxidase (rPfCPO) was produced in E. coli and confirmed to be active under aerobic conditions. rPfCPO behaved as a monomer of 61kDa molecular mass in gel filtration analysis. Immunofluorescence studies using antibodies to rPfCPO suggested that the enzyme was present in the parasite cytosol. These results were confirmed by detection of enzyme activity only in the parasite soluble fraction. Western blot analysis with anti-rPfCPO antibodies also revealed a 58kDa protein only in this fraction and not in the membrane fraction. The cytosolic presence of PfCPO provides evidence for a hybrid heme-biosynthetic pathway in the malarial parasite.
已提出一种独特的混合途径用于恶性疟原虫从头合成血红素,该途径涉及寄生虫的三个不同区室,即线粒体、顶质体和细胞质。虽然已证明寄生虫线粒体和顶质体含有该途径的关键酶,但尚无实验证据表明寄生虫细胞质参与血红素生物合成。在本研究中,在大肠杆菌中产生了重组恶性疟原虫原卟啉原III氧化酶(rPfCPO),并证实其在有氧条件下具有活性。在凝胶过滤分析中,rPfCPO表现为分子量为61kDa的单体。使用抗rPfCPO抗体的免疫荧光研究表明该酶存在于寄生虫细胞质中。仅在寄生虫可溶性部分检测到酶活性证实了这些结果。用抗rPfCPO抗体进行的蛋白质印迹分析也显示仅在该部分存在一种58kDa的蛋白质,而在膜部分不存在。PfCPO在细胞质中的存在为疟原虫中的混合血红素生物合成途径提供了证据。