With the inevitable selection of resistance to antimalarial drugs in treated populations, there is a need for new medicines to enter the clinic and new targets to progress through the drug discovery pipeline. In this study we set out to develop a transgenic rodent model for testing inhibitors of the Plasmodium falciparum cyclic GMP-dependent kinase in vivo. A model was needed that would allow us to investigate whether differences in amino acid sequence of this enzyme between species influences in vivo efficacy. Here we report the successful development of a transgenic P. berghei line in which the cyclic GMP-dependent protein kinase (PKG) was replaced by the P. falciparum orthologue. We demonstrate that the P. falciparum orthologue was able ...
Malaria is a major public health problem that affects millions of lives globally. The increased bur...
AbstractThe crystal structure of PfPK5, a cyclin-dependent kinase from Plasmodium falciparum, is the...
A role for the Plasmodium falciparum cyclic GMP (cGMP)-dependent protein kinase (PfPKG) in gametogen...
With the inevitable selection of resistance to antimalarial drugs in treated populations, there is a...
To combat drug resistance, new chemical entities are urgently required for use in next generation an...
Antimalarial drug resistance compels the quest for new compounds that target alternative pathways to...
Background: Examining essential biochemical pathways in Plasmodium falciparum presents serious chall...
BACKGROUND: Endemic human pathogens are subject to strong immune selection, and interrogation of pat...
The search for antimalarial chemotypes with modes of action unrelated to existing drugs has intensif...
BACKGROUND: Examining essential biochemical pathways in Plasmodium falciparum presents serious chall...
The requirement for next-generation antimalarials to be both curative and transmission-blocking nece...
Resistance to antimalarial drugs inevitably follows their deployment in malaria endemic parts of the...
Protein and phosphoinositide kinases have been successfully exploited as drug targets in various dis...
Malaria parasite transmission requires differentiation of male and female gametocytes into gametes w...
Malaria is a major public health problem that affects millions of lives globally. The increased bur...
AbstractThe crystal structure of PfPK5, a cyclin-dependent kinase from Plasmodium falciparum, is the...
A role for the Plasmodium falciparum cyclic GMP (cGMP)-dependent protein kinase (PfPKG) in gametogen...
With the inevitable selection of resistance to antimalarial drugs in treated populations, there is a...
To combat drug resistance, new chemical entities are urgently required for use in next generation an...
Antimalarial drug resistance compels the quest for new compounds that target alternative pathways to...
Background: Examining essential biochemical pathways in Plasmodium falciparum presents serious chall...
BACKGROUND: Endemic human pathogens are subject to strong immune selection, and interrogation of pat...
The search for antimalarial chemotypes with modes of action unrelated to existing drugs has intensif...
BACKGROUND: Examining essential biochemical pathways in Plasmodium falciparum presents serious chall...
The requirement for next-generation antimalarials to be both curative and transmission-blocking nece...
Resistance to antimalarial drugs inevitably follows their deployment in malaria endemic parts of the...
Protein and phosphoinositide kinases have been successfully exploited as drug targets in various dis...
Malaria parasite transmission requires differentiation of male and female gametocytes into gametes w...
Malaria is a major public health problem that affects millions of lives globally. The increased bur...
AbstractThe crystal structure of PfPK5, a cyclin-dependent kinase from Plasmodium falciparum, is the...
A role for the Plasmodium falciparum cyclic GMP (cGMP)-dependent protein kinase (PfPKG) in gametogen...