Sam. Vanhommerig et al., ROTATIONAL BARRIERS OF 1,3-SUBSTITUTED PYRIDINES AND BENZENES AS MODELS FOR THE NAD+ NADH COENZYME/, Journal of molecular structure. Theochem, 110(1), 1994, pp. 53-59
The NAD+/NADH coenzyme is involved in many enzyme-catalysed oxidation-
reduction reactions. In order to obtain better insight in the catalyti
c mechanism of NAD+/NADH dependent dehydrogenases, conformational stud
ies of 1,3-substituted pyridines and benzenes were carried out, using
ab initio, semiempirical (AM1 and PM3) and force-field (AMBER 4.0, CVF
F and CHARMm21.3) methods. From a comparison with the few known experi
mental gas-phase data it was found that both force field and ab initio
calculated rotational barriers around the C3-C7 bond were too high, w
hereas AM1 and PM3 calculated barriers were always too low. After intr
oducing appropriate scaling factors, the results of the computational
methods could be brought into line with the experimental values. The r
otational barriers thus calculated (lower than 5.5 kcal mol-1) allow s
ufficient flexibility at ambient conditions to permit the necessary ad
justment of NAD+/NADH to the enzyme pocket. The AMBER 4.0 force field
parameters were accordingly adjusted in such a way as to enable force
field simulations on (co)enzymes.