The post-translational farnesylation of proteins
serves to anchor a subset of intracellular proteins to
membranes in eukaryotic organisms and also promotes
protein-protein interactions. Inhibition of protein farnesyltransferase
(PFT) is lethal to the pathogenic protozoa
Plasmodium falciparum. Parasites were isolated
that were resistant to BMS-388891, a tetrahydroquinoline
(THQ) PFT inhibitor. Resistance was associated
with a 12-fold decrease in drug susceptibility. Genotypic
analysis revealed a single point mutation in the subunit
in resistant parasites. The resultant tyrosine 837 to
cysteine alteration in the subunit corresponded to the
binding site for the THQ and peptide substrate. Biochemical
analysis of Y837C-PFT demonstrated a 13-fold
increase in BMS-388891 concentration necessary for inhibiting
50% of the enzyme activity. These data are consistent
with PFT as the target of BMS-388891 in P. falciparum
and suggest that PFT inhibitors 首ld be
combined with other antimalarial agents for effective
therapy. TSI激光粒子计数器/尘埃粒子计数器/激光尘埃粒子计数器
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