The temperature dependence of enzymatic kinetic resolutions reveals the relative contribution of enthalpy and entropy to enzymatic enantioselectivity

Citation
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
Citations number
64
Categorie Soggetti
Biochemistry & Biophysics
Journal title
BIOCATALYSIS AND BIOTRANSFORMATION
ISSN journal
10242422 → ACNP
Volume
17
Issue
1
Year of publication
1999
Pages
61 - 79
Database
ISI
SICI code
1024-2422(1999)17:1<61:TTDOEK>2.0.ZU;2-V
Abstract
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.