A fluorescently-labeled, conformationally-sensitive Bacillus stearothermophilus (Bs) dihydrofolate reductase (DHFR) (C73A/S131C MDCC DHFR) was developed and used to investigate kinetics and protein conformational motions associated with methotrexate (MTX) binding. This construct bears a covalently-attached fluorophore, N-[2-(1-maleimidyl)ethyl]-7-(diethylamino)coumarin-3-carboxamide (MDCC) attached at a distal cysteine, introduced by mutagenesis. The probe is sensitive to the local molecular environment, reporting on changes in the protein structure associated with ligand binding. Intrinsic tryptophan fluorescence of the unlabeled Bs DHFR construct (C73A/S131C DHFR) also showed changes upon MTX association. Stopped-flow analysis of all data...
Ensemble kinetics and single-molecule fluorescence microscopy were used to study conformational tran...
Dihydrofolate reductases (DHFR) are important, ubiquitous enzymes catalyzing the hydride transfer fr...
Protein flexibility is central to enzyme catalysis, yet it remains challenging both to predict confo...
A fluorescently-labeled, conformationally-sensitive Bacillus stearothermophilus (Bs) dihydrofolate r...
The goal of this project was to study the effect of the presence or absence of the cofactor NADPH on...
Two fluorescent amino acids, including the novel fluorescent species 4-biphenyl-l-phenylalanine (<b>...
AbstractDihydrofolate reductase (DHFR) is an intracellular target enzyme for folate antagonist drugs...
Dihydrofolate reductase (DHFR) plays a vital role in the DNA synthesis by reducing dihydrofolic acid...
Abstract13C NMR studies of 13C-labelled ligands bound to dihydrofolate reductase provide (DHFR) a po...
Dihydrofolate reductase (DHFR) has long been used as a model system in studies of the relationship b...
Dihydrofolate reductase (DHFR) is an essential enzyme necessary in the synthesis of DNA precursors. ...
Fluorine NMR experiments with a protein containing fluorinated amino acid analogs can often be used ...
It is well known that enzyme flexibility is critical for function. This is due to the observation th...
A fluorescein derivative of the lysine analogue of folic acid, N alpha-pteroyl-N epilson-(4'-fluores...
The stepwise reduction of dihydrofolate to tetrahydrofolate entails significant conformational chang...
Ensemble kinetics and single-molecule fluorescence microscopy were used to study conformational tran...
Dihydrofolate reductases (DHFR) are important, ubiquitous enzymes catalyzing the hydride transfer fr...
Protein flexibility is central to enzyme catalysis, yet it remains challenging both to predict confo...
A fluorescently-labeled, conformationally-sensitive Bacillus stearothermophilus (Bs) dihydrofolate r...
The goal of this project was to study the effect of the presence or absence of the cofactor NADPH on...
Two fluorescent amino acids, including the novel fluorescent species 4-biphenyl-l-phenylalanine (<b>...
AbstractDihydrofolate reductase (DHFR) is an intracellular target enzyme for folate antagonist drugs...
Dihydrofolate reductase (DHFR) plays a vital role in the DNA synthesis by reducing dihydrofolic acid...
Abstract13C NMR studies of 13C-labelled ligands bound to dihydrofolate reductase provide (DHFR) a po...
Dihydrofolate reductase (DHFR) has long been used as a model system in studies of the relationship b...
Dihydrofolate reductase (DHFR) is an essential enzyme necessary in the synthesis of DNA precursors. ...
Fluorine NMR experiments with a protein containing fluorinated amino acid analogs can often be used ...
It is well known that enzyme flexibility is critical for function. This is due to the observation th...
A fluorescein derivative of the lysine analogue of folic acid, N alpha-pteroyl-N epilson-(4'-fluores...
The stepwise reduction of dihydrofolate to tetrahydrofolate entails significant conformational chang...
Ensemble kinetics and single-molecule fluorescence microscopy were used to study conformational tran...
Dihydrofolate reductases (DHFR) are important, ubiquitous enzymes catalyzing the hydride transfer fr...
Protein flexibility is central to enzyme catalysis, yet it remains challenging both to predict confo...