In an effort to probe the inhibition of glyoxalase II (GLX2-2) from Arabidopsis thaliana, a series of N- and S-blocked glutathione compounds containing 9-fluorenylmethoxycarbonyl (FMOC) and Cbz protecting groups were synthesized and tested. The di-FMOC and di-Cbz compounds were the best inhibitors of GLX2-2 with Ki values of 0.89 0.05 and 2.3 0.5lM, respectively. The removal of protecting groups from either position resulted in comparable, diminished binding affinities. Analyses of site-directed mutants of GLX2-2 demonstrated that tight binding of these inhibitors is not due to interactions of the protecting groups with hydrophobic amino acids on the surface of the enzyme. Instead, MM2 calculations predict that the lowest energy structure...
Methylglyoxal (MGO) and glyoxal (GO) are toxic reactive carbonyl species generated as by-products of...
Several galactonoamidines were previously identified as very potent competitive inhibitors that exhi...
AbstractThe glyoxalase pathway is responsible for conversion of cytotoxic methylglyoxal (MG) to d-la...
AbstractA number of carboxyl-substituted s-blocked glutathiones have been shown to be competitive in...
Glyoxalase I is an enzyme which catalyzes the conversion of hemimercaptals derived from substituted ...
A number of carboxyl-substituted s-blocked glutathiones have been shown to be competitive inhibitors...
All biological cells produce methylglyoxal, a toxic 2-oxoaldehyde, as a by-product of primary metabo...
The role of the glyoxalase system in the detoxification of a - ketoaldehydes has made it an interest...
Human glyoxalase I is a Zn(II)-dependent isomerase that catalyzes the conversion of methylglyoxal-gl...
Previous attempts to design inhibitors of mammalian folylpolyglu-tamate synthetase (FPGS) have resul...
AbstractCytosolic glyoxalase II from Arabidopsis thaliana, GLX2-2, was overexpressed and purified to...
AbstractBackground: Glyoxalase II, the second of two enzymes in the glyoxalase system, is a thiolest...
BACKGROUND: Aiming at the rationale design of new herbicides, the availability of the three-dimensio...
Arabidopsis thaliana glyoxalase 2-1 (GLX2-1) exhibits extensive sequence similarity with GLX2 enzyme...
Antibiotic multidrug resistant infections are increasingly challenging to treat. To avoid entering a...
Methylglyoxal (MGO) and glyoxal (GO) are toxic reactive carbonyl species generated as by-products of...
Several galactonoamidines were previously identified as very potent competitive inhibitors that exhi...
AbstractThe glyoxalase pathway is responsible for conversion of cytotoxic methylglyoxal (MG) to d-la...
AbstractA number of carboxyl-substituted s-blocked glutathiones have been shown to be competitive in...
Glyoxalase I is an enzyme which catalyzes the conversion of hemimercaptals derived from substituted ...
A number of carboxyl-substituted s-blocked glutathiones have been shown to be competitive inhibitors...
All biological cells produce methylglyoxal, a toxic 2-oxoaldehyde, as a by-product of primary metabo...
The role of the glyoxalase system in the detoxification of a - ketoaldehydes has made it an interest...
Human glyoxalase I is a Zn(II)-dependent isomerase that catalyzes the conversion of methylglyoxal-gl...
Previous attempts to design inhibitors of mammalian folylpolyglu-tamate synthetase (FPGS) have resul...
AbstractCytosolic glyoxalase II from Arabidopsis thaliana, GLX2-2, was overexpressed and purified to...
AbstractBackground: Glyoxalase II, the second of two enzymes in the glyoxalase system, is a thiolest...
BACKGROUND: Aiming at the rationale design of new herbicides, the availability of the three-dimensio...
Arabidopsis thaliana glyoxalase 2-1 (GLX2-1) exhibits extensive sequence similarity with GLX2 enzyme...
Antibiotic multidrug resistant infections are increasingly challenging to treat. To avoid entering a...
Methylglyoxal (MGO) and glyoxal (GO) are toxic reactive carbonyl species generated as by-products of...
Several galactonoamidines were previously identified as very potent competitive inhibitors that exhi...
AbstractThe glyoxalase pathway is responsible for conversion of cytotoxic methylglyoxal (MG) to d-la...