Ab initio molecular orbital theory has been used to study the reactions catalyzed by the B12-dependent enzyme diol dehydratase. The calculations show that a pathway involving the 1,2-shift of a hydroxyl group is greatly facilitated by partial proton transfer to the migrating oxygen. These results suggest a conceptually simple mechanism for the rearrangement whose reaction rate is consistent with experiment. The inclusion of a gem-diol intermediate in the proposed pathway is in accordance with18O-labeling experiments and thus overcomes important shortcomings in previously proposed mechanisms
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We present a series of QM/MM calculations aimed at understanding the mechanism of the biological deh...
The various steps in a mechanism for the diol dehydrase reaction in which a carboxylic acid group of...
High-level quantum chemistry calculations have been used to examine the hydrogen-abstraction reactio...
Studies [Bachovchin, W. W., et al. (1978) Biochemistry 17, 2218] of the mechanism of inactivation o...
Studies [Bachovchin, W. W., et al. (1978) Biochemistry 17, 2218] of the mechanism of inactivation o...
Ab initio molecular orbital theory is used to investigate several possible mechanisms involving free...
Diol radicals (DRs) are important intermediates in biocatalysis, atmospheric chemistry, and biomass ...
We present a series of QM/MM calculations aimed at understanding the mechanism of the biological deh...
The reaction mechanisms for the MTO-catalyzed deoxygenation of epoxides and diols were investigated ...
Catalytic deoxydehydration (DODH) of vicinal diols is carried out employing methyltrioxorhenium (MTO...
AbstractBackground: Diol dehydratase is an enzyme that catalyzes the adenosylcobalamin (coenzyme B12...
The reaction mechanisms for the MTO-catalyzed deoxygenation of epoxides and diols were investigated ...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We present a series of QM/MM calculations aimed at understanding the mechanism of the biological deh...
The various steps in a mechanism for the diol dehydrase reaction in which a carboxylic acid group of...
High-level quantum chemistry calculations have been used to examine the hydrogen-abstraction reactio...
Studies [Bachovchin, W. W., et al. (1978) Biochemistry 17, 2218] of the mechanism of inactivation o...
Studies [Bachovchin, W. W., et al. (1978) Biochemistry 17, 2218] of the mechanism of inactivation o...
Ab initio molecular orbital theory is used to investigate several possible mechanisms involving free...
Diol radicals (DRs) are important intermediates in biocatalysis, atmospheric chemistry, and biomass ...
We present a series of QM/MM calculations aimed at understanding the mechanism of the biological deh...
The reaction mechanisms for the MTO-catalyzed deoxygenation of epoxides and diols were investigated ...
Catalytic deoxydehydration (DODH) of vicinal diols is carried out employing methyltrioxorhenium (MTO...
AbstractBackground: Diol dehydratase is an enzyme that catalyzes the adenosylcobalamin (coenzyme B12...
The reaction mechanisms for the MTO-catalyzed deoxygenation of epoxides and diols were investigated ...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We have investigated the kinetic characteristics of the inactivation of the adenosylcobalamin-depend...
We present a series of QM/MM calculations aimed at understanding the mechanism of the biological deh...