Asexual stages of Plasmodium falciparum cause severe malaria and are dependent upon host glucose for energy. We have identified a glucose transporter ofP. falciparum (PfHT1) and studied its function and expression during parasite development in vitro. PfHT1 is a saturable, sodium-independent, and stereospecific transporter, which is inhibited by cytochalasin B, and has a relatively high affinity for glucose (K m = 0.48 mM) when expressed in Xenopus laevis oocytes. Competition experiments with glucose analogues show that hydroxyl groups at positions C-3 and C-4 are important for ligand binding. mRNA levels for PfHT1, assessed by the quantitative technique of tandem competitive polymerase chain reaction, are highest during the small ring stag...
Although the Plasmodium falciparum hexose transporter PfHT has emerged as a promising target for ant...
The human malaria parasite, Plasmodium falciparum, has long been known to have a homologue of the hu...
AbstractAn O-3-hexose derivative, shown previously to inhibit a malaria parasite hexose transporter ...
Plasmodium falciparum requires glucose as its energy source to multiply within erythrocytes but is s...
During blood infection, malarial parasites use D-glucose as their main energy source. The Plasmodium...
To characterise plasmodial glycolysis, we generated two transgenic Plasmodium falciparum lines, one ...
AbstractTo characterise plasmodial glycolysis, we generated two transgenic Plasmodium falciparum lin...
During blood infection, malarial parasites use D-glucose as their main energy source. The Plasmodium...
The hexose sugar, glucose, is a vital energy source for most organisms and an essential nutrient for...
The hexose sugar, glucose, is a vital energy source for most organisms and an essential nutrient for...
Glucose is the primary source of energy and a key substrate for most cells. Inhibition of cellular g...
Intracellular pathogens have evolved mechanisms to ensure their survival and development inside thei...
Development of resistance against current antimalarial drugs necessitates the search for novel drugs...
Plasmodium spp. malaria parasites in the blood stage draw energy from anaerobic glycolysis when mult...
Although the Plasmodium falciparum hexose transporter PfHT has emerged as a promising target for ant...
Although the Plasmodium falciparum hexose transporter PfHT has emerged as a promising target for ant...
The human malaria parasite, Plasmodium falciparum, has long been known to have a homologue of the hu...
AbstractAn O-3-hexose derivative, shown previously to inhibit a malaria parasite hexose transporter ...
Plasmodium falciparum requires glucose as its energy source to multiply within erythrocytes but is s...
During blood infection, malarial parasites use D-glucose as their main energy source. The Plasmodium...
To characterise plasmodial glycolysis, we generated two transgenic Plasmodium falciparum lines, one ...
AbstractTo characterise plasmodial glycolysis, we generated two transgenic Plasmodium falciparum lin...
During blood infection, malarial parasites use D-glucose as their main energy source. The Plasmodium...
The hexose sugar, glucose, is a vital energy source for most organisms and an essential nutrient for...
The hexose sugar, glucose, is a vital energy source for most organisms and an essential nutrient for...
Glucose is the primary source of energy and a key substrate for most cells. Inhibition of cellular g...
Intracellular pathogens have evolved mechanisms to ensure their survival and development inside thei...
Development of resistance against current antimalarial drugs necessitates the search for novel drugs...
Plasmodium spp. malaria parasites in the blood stage draw energy from anaerobic glycolysis when mult...
Although the Plasmodium falciparum hexose transporter PfHT has emerged as a promising target for ant...
Although the Plasmodium falciparum hexose transporter PfHT has emerged as a promising target for ant...
The human malaria parasite, Plasmodium falciparum, has long been known to have a homologue of the hu...
AbstractAn O-3-hexose derivative, shown previously to inhibit a malaria parasite hexose transporter ...