The methylerythritol phosphate pathway for isoprenoid biosynthesis in coccidia: presence and sensitivity to fosmidomycin

Exp Parasitol. 2007 Aug;116(4):375-84. doi: 10.1016/j.exppara.2007.02.002. Epub 2007 Feb 21.

Abstract

The apicoplast is a recently discovered, plastid-like organelle present in most apicomplexa. The methylerythritol phosphate (MEP) pathway involved in isoprenoid biosynthesis is one of the metabolic pathways associated with the apicoplast, and is a new promising therapeutic target in Plasmodium falciparum. Here, we check the presence of isoprenoid genes in four coccidian parasites according to genome database searches. Cryptosporidium parvum and C. hominis, which have no plastid genome, lack the MEP pathway. In contrast, gene expression studies suggest that this metabolic pathway is present in several development stages of Eimeria tenella and in tachyzoites of Toxoplasma gondii. We studied the potential of fosmidomycin, an antimalarial drug blocking the MEP pathway, to inhibit E. tenella and T. gondii growth in vitro. The drug was poorly effective even at high concentrations. Thus, both fosmidomycin sensitivity and isoprenoid metabolism differs substantially between apicomplexan species.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cell Line
  • Cell Survival / drug effects
  • Chickens
  • Coccidia / drug effects
  • Coccidia / genetics
  • Coccidia / growth & development
  • Coccidia / metabolism*
  • Cryptosporidium / drug effects
  • Cryptosporidium / genetics
  • Cryptosporidium / growth & development
  • Cryptosporidium / metabolism
  • Cryptosporidium parvum / drug effects
  • Cryptosporidium parvum / genetics
  • Cryptosporidium parvum / growth & development
  • Cryptosporidium parvum / metabolism
  • Eimeria tenella / drug effects
  • Eimeria tenella / genetics
  • Eimeria tenella / growth & development
  • Eimeria tenella / metabolism
  • Erythritol / genetics
  • Erythritol / metabolism*
  • Fosfomycin / analogs & derivatives*
  • Fosfomycin / pharmacology
  • Gene Expression Regulation, Developmental / genetics
  • Genome, Protozoan
  • Herbicides / pharmacology
  • Isoxazoles / pharmacology
  • Mice
  • Mice, Inbred CBA
  • Oxazolidinones / pharmacology
  • Terpenes / metabolism*
  • Toxoplasma / drug effects
  • Toxoplasma / genetics
  • Toxoplasma / growth & development
  • Toxoplasma / metabolism

Substances

  • Herbicides
  • Isoxazoles
  • Oxazolidinones
  • Terpenes
  • Fosfomycin
  • clomazone
  • fosmidomycin
  • Erythritol