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Enhancement of the catalytic activity of ferulic acid decarboxylase from Enterobacter sp Px6-4 through random and site-directed mutagenesis

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Abstract
The enzyme ferulic acid decarboxylase (FADase) from Enterobacter sp. Px6-4 catalyzes the decarboxylation reaction of lignin monomers and phenolic compounds such as p-coumaric acid, caffeic acid, and ferulic acid into their corresponding 4-vinyl derivatives, that is, 4-vinylphenol, 4-vinylcatechol, and 4-vinylguaiacol, respectively. Among various ferulic acid decarboxylase enzymes, we chose the FADase from Enterobacter sp. Px6-4, whose crystal structure is known, and produced mutants to enhance its catalytic activity by random and site-directed mutagenesis. After three rounds of sequential mutations, FADase(F95L/D112N/V151I) showed approximately 34-fold higher catalytic activity than wild-type for the production of 4-vinylguaiacol from ferulic acid. Docking analyses suggested that the increased activity of FADase(F95L/D112N/V151I) could be due to formation of compact active site compared with that of the wild-type FADase. Considering the amount of phenolic compounds such as lignin monomers in the biomass components, successfully bioengineered FADase(F95L/D112N/V151I) from Enterobacter sp. Px6-4 could provide an ecofriendly biocatalytic tool for producing diverse styrene derivatives from biomass.
Author(s)
Lee, HyunjiPark, JiyoungJung, ChaewonHan, DongfeiSeo, JiyoungAhn, Joong-HoonChong, YouhoonHur, Hor-Gil
Issued Date
2015-11
Type
Article
DOI
10.1007/s00253-015-6717-8
URI
https://scholar.gist.ac.kr/handle/local/14520
Publisher
Springer Verlag
Citation
Applied Microbiology and Biotechnology, v.99, no.22, pp.9473 - 9481
ISSN
0175-7598
Appears in Collections:
Department of Environment and Energy Engineering > 1. Journal Articles
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