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Article Dans Une Revue Process Biochemistry Année : 2009

Enzymatic acylation of polar dipeptides: Influence of reaction media and molecular environment of functional groups

Résumé

The enzymatic acylation of polar dipeptides was investigated. First, the Novozym435®-catalyzed acylation of Lys-Ser, HCl exhibiting three potential acylable sites was carried out in organic media (2-methyl-2-butanol, oleic acid) and in an ionic liquid ([Bmim]+[PF6]−). In these reactions, the chemo-selectivity of the acylation was exclusively in favour of the N-lysine acylation and the efficiency (substrate conversion) was demonstrated to be under control of the peptide solubility. The use of [Bmim]+[PF6]− permitted to significantly improve the dipeptide solubility, and to enhance both substrates conversion and initial rates of acylation reaction. In the three reaction media used, the O-acylated derivative of the dipeptide was never detected suggesting a weak reactivity of the serine hydroxyl group due to its molecular environment and particularly to the presence of a free carboxylic group known for its electroattractor property. Last, the acylation of a natural dipeptide (carnosine), exhibiting a very low solubility in organic solvents, was also performed. Carnosine was successfully N-acylated in 2-methyl-2-butanol, and a yield of 39% was obtained when improving the substrate solubility: a better dispersibility was obtained by application of a high pressure on the reaction medium just before starting the reaction.

Dates et versions

hal-00507939 , version 1 (02-08-2010)

Identifiants

Citer

Éric Husson, Catherine Humeau, C. Paris, Régis Vanderesse, Xavier Framboisier, et al.. Enzymatic acylation of polar dipeptides: Influence of reaction media and molecular environment of functional groups. Process Biochemistry, 2009, 44 (4), pp.428-434. ⟨10.1016/j.procbio.2008.12.011⟩. ⟨hal-00507939⟩
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