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 61 kDa molecular mass in gel filtration analysis. Immunofluorescence studies using antibodies to rPfCPO suggested that the enzyme was present in the parasite cy...
Intermediates of the isoprenoid metabolism can bind to heme groups. Heme is critical and its derivat...
The combination of drug resistance, lack of an effective vaccine, and ongoing conflict and poverty m...
In the malarial parasite, enzymes of heme-biosynthetic pathway are distributed in different cellul...
A unique hybrid pathway has been proposed for de novo heme biosynthesis in Plasmodium falciparum inv...
Earlier studies in this laboratory had shown that the malarial parasite can synthesize heme de novo ...
Animal-like heme biosynthetic pathway has been identified in most apicomplexan except for Cryptospor...
The hybrid pathway for heme biosynthesis in the malarial parasite proposes the involvement of parasi...
All eight enzymes required for de novo heme biosynthesis have been predicted from the nuclear genome...
Malaria is a life-threatening vector borne infectious disease caused by protozoan parasites of the g...
Heme metabolism is central to malaria parasite biology. The parasite acquires heme from host hemoglo...
AbstractThe metabolic pathways in apicoplasts of human malaria parasites are promising drug targets....
Uroporphyrinogen decarboxylase (UROD) is a key enzyme in the heme-biosynthetic pathway and in Plasmo...
Uroporphyrinogen decarboxylase (UROD) is a key enzyme in the heme-biosynthetic pathway and in Plasmo...
Our previous studies have demonstrated de novo haem biosynthesis in the malarial parasite (Plasmodiu...
The hybrid pathway for heme biosynthesis in the malarial parasite proposes the involvement of parasi...
Intermediates of the isoprenoid metabolism can bind to heme groups. Heme is critical and its derivat...
The combination of drug resistance, lack of an effective vaccine, and ongoing conflict and poverty m...
In the malarial parasite, enzymes of heme-biosynthetic pathway are distributed in different cellul...
A unique hybrid pathway has been proposed for de novo heme biosynthesis in Plasmodium falciparum inv...
Earlier studies in this laboratory had shown that the malarial parasite can synthesize heme de novo ...
Animal-like heme biosynthetic pathway has been identified in most apicomplexan except for Cryptospor...
The hybrid pathway for heme biosynthesis in the malarial parasite proposes the involvement of parasi...
All eight enzymes required for de novo heme biosynthesis have been predicted from the nuclear genome...
Malaria is a life-threatening vector borne infectious disease caused by protozoan parasites of the g...
Heme metabolism is central to malaria parasite biology. The parasite acquires heme from host hemoglo...
AbstractThe metabolic pathways in apicoplasts of human malaria parasites are promising drug targets....
Uroporphyrinogen decarboxylase (UROD) is a key enzyme in the heme-biosynthetic pathway and in Plasmo...
Uroporphyrinogen decarboxylase (UROD) is a key enzyme in the heme-biosynthetic pathway and in Plasmo...
Our previous studies have demonstrated de novo haem biosynthesis in the malarial parasite (Plasmodiu...
The hybrid pathway for heme biosynthesis in the malarial parasite proposes the involvement of parasi...
Intermediates of the isoprenoid metabolism can bind to heme groups. Heme is critical and its derivat...
The combination of drug resistance, lack of an effective vaccine, and ongoing conflict and poverty m...
In the malarial parasite, enzymes of heme-biosynthetic pathway are distributed in different cellul...