M. Cushman et al., Design, synthesis, and biological evaluation of homologous phosphonic acids and sulfonic acids as inhibitors of lumazine synthase, J ORG CHEM, 64(11), 1999, pp. 3838-3845
Three phosphonic acid inhibitors of lumazine synthase were synthesized in w
hich the phosphorus atom was separated from the pyrimidinedione ring by pol
ymethylene linker chains containing four, five, and six carbon atoms. Three
analogous sulfonic acids were also synthesized. The inhibitors were design
ed as metabolically stable analogues of a hypothetical intermediate in the
reaction catalyzed by lumazine synthase, and the design process was support
ed by the results of computer graphics molecular modeling of the inhibitors
within the active site of the enzyme. The most potent of the new inhibitor
s, 6-(6-D-ribitylamino-2,4-dihydroxypyrimidine-5-yl)-1-hexylphosphonic acid
, inhibited recombinant lumazine synthase beta(60) capsids of Bacillus subt
ilis with a K-i of 130 mu M, making it the most potent inhibitor of lumazin
e synthase reported to date.