Dihydrofolate reductase (DHFR) from Escherichia coli (EcDHFR) adopts two major conformations, closed and occluded, and movement between these two conformations is important for progression through the catalytic cycle. DHFR from the cold-adapted organism Moritella profunda (MpDHFR) on the other hand is unable to form the two hydrogen bonds that stabilize the occluded conformation in EcDHFR and so remains in a closed conformation during catalysis. EcDHFR-S148P and MpDHFR-P150S were examined to explore the influence of the occluded conformation on catalysis by DHFR. Destabilization of the occluded conformation did not affect hydride transfer but altered the affinity for the oxidized form of nicotinamide adenine dinucleotide phosphat...
Conformational heterogeneity is emerging as a defining characteristic of enzyme function. However, u...
Dihydrofolate reductase has long been used as a model system to study the coupling of protein motion...
Dihydrofolate reductase (DHFR) has long been used as a model system in studies of the relationship b...
Dihydrofolate reductase (DHFR) is often used as a model system to study the relation between protei...
Protein flexibility is central to enzyme catalysis, yet it remains challenging both to predict confo...
Dihydrofolate reductase (DHFR) is the enzyme that catalyses the reduction of 7,8-dihydrofolate (DHF)...
Protein motions, which occur on a multitude of timescales, are known to be central to enzyme catalys...
Dihydrofolate reductase has long been used as a model system to study the coupling of protein motion...
Dihydrofolate reductase (DHFR) is often used as a model system to study the relation between protein...
Isotopic substitution (15N, 13C, 2H) of a catalytically compromised variant of Escherichia coli dihy...
The role of protein dynamics in the reaction catalyzed by dihydrofolate reductase from the hyperther...
Dihydrofolate reductase (DHFR) catalyzes the reduction of dihydrofolate (DHF) to tetrahydrofolate (T...
Mammalian dihydrofolate reductases (DHFRs) catalyze the reduction of folate more efficiently than th...
Conformational heterogeneity is emerging as a defining characteristic of enzyme function. However, u...
Dihydrofolate reductase has long been used as a model system to study the coupling of protein motion...
Dihydrofolate reductase (DHFR) has long been used as a model system in studies of the relationship b...
Dihydrofolate reductase (DHFR) is often used as a model system to study the relation between protei...
Protein flexibility is central to enzyme catalysis, yet it remains challenging both to predict confo...
Dihydrofolate reductase (DHFR) is the enzyme that catalyses the reduction of 7,8-dihydrofolate (DHF)...
Protein motions, which occur on a multitude of timescales, are known to be central to enzyme catalys...
Dihydrofolate reductase has long been used as a model system to study the coupling of protein motion...
Dihydrofolate reductase (DHFR) is often used as a model system to study the relation between protein...
Isotopic substitution (15N, 13C, 2H) of a catalytically compromised variant of Escherichia coli dihy...
The role of protein dynamics in the reaction catalyzed by dihydrofolate reductase from the hyperther...
Dihydrofolate reductase (DHFR) catalyzes the reduction of dihydrofolate (DHF) to tetrahydrofolate (T...
Mammalian dihydrofolate reductases (DHFRs) catalyze the reduction of folate more efficiently than th...
Conformational heterogeneity is emerging as a defining characteristic of enzyme function. However, u...
Dihydrofolate reductase has long been used as a model system to study the coupling of protein motion...
Dihydrofolate reductase (DHFR) has long been used as a model system in studies of the relationship b...