Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate

Geranyl acetate, a significant natural fragrance compound, is typically available only in minute quantities from plant sources. This study focuses on the biosynthesis of this compound through enzymatic esterification of geraniol with acetic acid, utilizing the environmentally benign and generally sa...

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Main Authors: Yaakub, N. S., Annuar, M. S. M., Abd Razak, N. N., Khalid, K.
Format: Article
Published: Croatian Association of Chemical Engineers 2024
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Online Access:http://eprints.um.edu.my/45905/
https://doi.org/10.15255/CABEQ.2023.2227
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spelling my.um.eprints.459052024-11-14T04:14:43Z http://eprints.um.edu.my/45905/ Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate Yaakub, N. S. Annuar, M. S. M. Abd Razak, N. N. Khalid, K. QR Microbiology Geranyl acetate, a significant natural fragrance compound, is typically available only in minute quantities from plant sources. This study focuses on the biosynthesis of this compound through enzymatic esterification of geraniol with acetic acid, utilizing the environmentally benign and generally safe solvent, acetone. The optimization process initially involved key synthesis variables, including acetic acid and geraniol concentrations, temperature, and enzyme loading. Subsequently, a thermodynamic investigation of the biosynthesis was conducted alongside kinetic elucidation, providing insights into the mechanism of the lipase -mediated esterification, which was revealed to follow a PingPong Bi-Bi mechanism with no apparent inhibition by either substrate. The reaction is endothermic, with calculated changes in enthalpy (D H ) , and entropy, (D S ) at 66 kJ mol -1 and 217 J mol -1 K -1 , respectively. The activation energy, E a , was determined to be 28 kJ mol -1 . Esterification was non -spontaneous below 30 degrees C but shifted to spontaneous at higher temperatures. These findings hold significance for the development of biocatalytic processes. Croatian Association of Chemical Engineers 2024 Article PeerReviewed Yaakub, N. S. and Annuar, M. S. M. and Abd Razak, N. N. and Khalid, K. (2024) Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate. Chemical and Biochemical Engineering Quarterly, 38 (1). pp. 83-95. ISSN 0352-9568, DOI https://doi.org/10.15255/CABEQ.2023.2227 <https://doi.org/10.15255/CABEQ.2023.2227>. https://doi.org/10.15255/CABEQ.2023.2227 10.15255/CABEQ.2023.2227
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QR Microbiology
spellingShingle QR Microbiology
Yaakub, N. S.
Annuar, M. S. M.
Abd Razak, N. N.
Khalid, K.
Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate
description Geranyl acetate, a significant natural fragrance compound, is typically available only in minute quantities from plant sources. This study focuses on the biosynthesis of this compound through enzymatic esterification of geraniol with acetic acid, utilizing the environmentally benign and generally safe solvent, acetone. The optimization process initially involved key synthesis variables, including acetic acid and geraniol concentrations, temperature, and enzyme loading. Subsequently, a thermodynamic investigation of the biosynthesis was conducted alongside kinetic elucidation, providing insights into the mechanism of the lipase -mediated esterification, which was revealed to follow a PingPong Bi-Bi mechanism with no apparent inhibition by either substrate. The reaction is endothermic, with calculated changes in enthalpy (D H ) , and entropy, (D S ) at 66 kJ mol -1 and 217 J mol -1 K -1 , respectively. The activation energy, E a , was determined to be 28 kJ mol -1 . Esterification was non -spontaneous below 30 degrees C but shifted to spontaneous at higher temperatures. These findings hold significance for the development of biocatalytic processes.
format Article
author Yaakub, N. S.
Annuar, M. S. M.
Abd Razak, N. N.
Khalid, K.
author_facet Yaakub, N. S.
Annuar, M. S. M.
Abd Razak, N. N.
Khalid, K.
author_sort Yaakub, N. S.
title Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate
title_short Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate
title_full Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate
title_fullStr Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate
title_full_unstemmed Enzymatic Mechanism and Energetics in the Optimized Biosynthesis of the Flavor and Fragrance Ester Geranyl Acetate
title_sort enzymatic mechanism and energetics in the optimized biosynthesis of the flavor and fragrance ester geranyl acetate
publisher Croatian Association of Chemical Engineers
publishDate 2024
url http://eprints.um.edu.my/45905/
https://doi.org/10.15255/CABEQ.2023.2227
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