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Synthesis of Short-Chain Alkyl Butyrate through Esterification Reaction Using Immobilized Rhodococcus Cutinase and Analysis of Substrate Specificity through Molecular Docking

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Title
Synthesis of Short-Chain Alkyl Butyrate through Esterification Reaction Using Immobilized Rhodococcus Cutinase and Analysis of Substrate Specificity through Molecular Docking
Other Titles
고정화된 로도코커스 큐티나제를 이용한 에스테르화 반응을 통한 단쇄 알킬 부티레이트의 합성 및 분자 도킹을 통한 기질 특이성 분석
Authors
Seok-Jae Won
Yim, Joung Han
Hyung Kwoun Kim
Keywords
Cutinaseesterificationalkyl butyratemolecular dockinsubstrate specificity
Issue Date
2023
Citation
Seok-Jae Won, Yim, Joung Han, Hyung Kwoun Kim. 2023. "Synthesis of Short-Chain Alkyl Butyrate through Esterification Reaction Using Immobilized Rhodococcus Cutinase and Analysis of Substrate Specificity through Molecular Docking". JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 33(2): 268-276.
Abstract
Alkyl butyrate with fruity flavor is known as an important additive in the food industry. We synthesized various alkyl butyrates from various fatty alcohol and butyric acid using immobilized Rhodococcus cutinase (Rcut). Esterification reaction was performed in a non-aqueous system including heptane, isooctane, hexane, and cyclohexane. As a result of performing the alkyl butyrate synthesis reaction using alcohols of various chain lengths, it was found that the preference for the alcohol substrate had the following order: C6 > C4 > C8 > C10 > C2. Through molecular docking analysis, it was found that the greater the hydrophobicity of alcohol, the higher the accessibility to the active site of the enzyme. However, since the number of torsions increased as the chain length increased, it became difficult for the hydroxyl oxygen of the alcohol to access the γO of serine at the enzyme active site. These molecular docking results were consistent with substrate preference results of the Rcut enzyme. The Rcut maintained the synthesis efficiency at least for 5 days in isooctane solvent. We synthesized as much as 452 mM butyl butyrate by adding 100 mM substrate daily for 5 days and performing the reaction. These results show that Rcut is an efficient enzyme for producing alkyl butyrate used in the food industry.
URI
https://repository.kopri.re.kr/handle/201206/16002
DOI
http://dx.doi.org/10.4014/jmb.2211.11022
Type
Article
Station
King Sejong Station
Indexed
SCIE
Appears in Collections  
2021-2021, Commercialization of new Biomaterials from polar organisms (21-21) / Yim, Joung Han (PE21150)
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