Pla. Overbeeke et al., The temperature dependence of enzymatic kinetic resolutions reveals the relative contribution of enthalpy and entropy to enzymatic enantioselectivity, BIOCATAL B, 17(1), 1999, pp. 61-79
The temperature dependence of the enantioselectivity of several lipase-cala
lyzed hydrolysis and acylation reactions of racemic esters and alcohols has
been determined. From the results we estimated the difference in activatio
n enthalpy (Delta Delta H-# and activation entropy (Delta Delta S-#) for th
e two enantiomers in the enantioselective reaction step. Contrary to earlie
r suggestions, we found that the enthalpic and entropic contributions to th
e enantioselectivity are of similar magnitude. A plot of Delta Delta H-# ve
rsus Delta Delta S-#-values of data available in the literature for various
enzyme-substrate combinations revealed a tempting correlation between the
enthalpic and entropic contributions. This observation would imply enthalpy
-entropy compensation to be a general feature of enantioselective enzymatic
catalysis. On closer inspection of the data set it was realized that this
trend must be considered fortuitous. It originates from the non-random coll
ection of those enzyme-substrate combinations for which the numerical value
of the enantiomeric ratio can be measured with a suitable degree of accura
cy at ambient temperatures. Indications for the occurrence of genuine entha
lpy-entropy compensation, however, have been observed for series of homolog
ous substrates and changes of solvent composition.