TY - JOUR
T1 - The shikimate pathway and its branches in apicomplexan parasites
AU - Roberts, Craig W.
AU - Roberts, Fiona
AU - Lyons, Russell E.
AU - Kirisits, Michael J.
AU - Mui, Ernest J.
AU - Finnerty, John
AU - Johnson, Jennifer J.
AU - Ferguson, David J.P.
AU - Coggins, John R.
AU - Krell, Tino
AU - Coombs, Graham H.
AU - Milhous, Wilbur K.
AU - Kyle, Dennis E.
AU - Tzipori, Saul
AU - Barnwell, John
AU - Dame, John B.
AU - Carlton, Jane
AU - McLeod, Rima
N1 - Funding Information:
Financial support: NIH (AI-44328); Welcome Trust; Research to Prevent Blindness Foundation; Fulbright Scholar Awards; British Pathology Society Traveling Fellowship; Howard Hughes Foundation; World Health Organization; Brennan, Blackmon, Hoffman, and Koshland families; Toxoplasmosis Research Institute.
PY - 2002/2/15
Y1 - 2002/2/15
N2 - The shikimate pathway is essential for production of a plethora of aromatic compounds in plants, bacteria, and fungi. Seven enzymes of the shikimate pathway catalyze sequential conversion of erythrose 4-phosphate and phosphoenol pyruvate to chorismate. Chorismate is then used as a substrate for other pathways that culminate in production of folates, ubiquinone, napthoquinones, and the aromatic amino acids tryptophan, phenylalanine, and tyrosine. The shikimate pathway is absent from animals and present in the apicomplexan parasites Toxoplasma gondii, Plasmodium falciparum, and Cryptosporidium parvum. Inhibition of the pathway by glyphosate is effective in controlling growth of these parasites. These findings emphasize the potential benefits of developing additional effective inhibitors of the shikimate pathway. Such inhibitors may function as broad-spectrum antimicrobial agents that are effective against bacterial and fungal pathogens and apicomplexan parasites.
AB - The shikimate pathway is essential for production of a plethora of aromatic compounds in plants, bacteria, and fungi. Seven enzymes of the shikimate pathway catalyze sequential conversion of erythrose 4-phosphate and phosphoenol pyruvate to chorismate. Chorismate is then used as a substrate for other pathways that culminate in production of folates, ubiquinone, napthoquinones, and the aromatic amino acids tryptophan, phenylalanine, and tyrosine. The shikimate pathway is absent from animals and present in the apicomplexan parasites Toxoplasma gondii, Plasmodium falciparum, and Cryptosporidium parvum. Inhibition of the pathway by glyphosate is effective in controlling growth of these parasites. These findings emphasize the potential benefits of developing additional effective inhibitors of the shikimate pathway. Such inhibitors may function as broad-spectrum antimicrobial agents that are effective against bacterial and fungal pathogens and apicomplexan parasites.
UR - https://www.scopus.com/pages/publications/0037083107
UR - https://www.scopus.com/pages/publications/0037083107#tab=citedBy
U2 - 10.1086/338004
DO - 10.1086/338004
M3 - Article
C2 - 11865437
AN - SCOPUS:0037083107
SN - 0022-1899
VL - 185
SP - S25-S36
JO - Journal of Infectious Diseases
JF - Journal of Infectious Diseases
ER -