Engineering a Cytochrome P450 for Demethylation of Lignin-Derived Aromatic Aldehydes

dc.contributor.authorEllis, Emerald S.
dc.contributor.authorHinchen, Daniel J.
dc.contributor.authorBleem, Alissa
dc.contributor.authorBu, Lintao
dc.contributor.authorMallinson, Sam J. B.
dc.contributor.authorAllen, Mark D.
dc.contributor.authorStreit, Bennett R.
dc.contributor.authorMachovina, Melodie M.
dc.contributor.authorDoolin, Quinlan V.
dc.contributor.authorMichener, William E.
dc.contributor.authorJohnson, Christopher W.
dc.contributor.authorKnott, Brandon C.
dc.contributor.authorBeckham, Gregg T.
dc.contributor.authorMcGeehan, John E.
dc.contributor.authorDuBois, Jennifer L.
dc.date.accessioned2022-08-31T15:51:52Z
dc.date.available2022-08-31T15:51:52Z
dc.date.issued2021-03
dc.description.abstractBiological funneling of lignin-derived aromatic compounds is a promising approach for valorizing its catalytic depolymerization products. Industrial processes for aromatic bioconversion will require efficient enzymes for key reactions, including demethylation of O-methoxy-aryl groups, an essential and often rate-limiting step. The recently characterized GcoAB cytochrome P450 system comprises a coupled monoxygenase (GcoA) and reductase (GcoB) that catalyzes oxidative demethylation of the O-methoxy-aryl group in guaiacol. Here, we evaluate a series of engineered GcoA variants for their ability to demethylate o-and p-vanillin, which are abundant lignin depolymerization products. Two rationally designed, single amino acid substitutions, F169S and T296S, are required to convert GcoA into an efficient catalyst toward the o- and p-isomers of vanillin, respectively. Gain-of-function in each case is explained in light of an extensive series of enzyme-ligand structures, kinetic data, and molecular dynamics simulations. Using strains of Pseudomonas putida KT2440 already optimized for p-vanillin production from ferulate, we demonstrate demethylation by the T296S variant in vivo. This work expands the known aromatic O-demethylation capacity of cytochrome P450 enzymes toward important lignin-derived aromatic monomers.en_US
dc.identifier.citationEllis, E. S., Hinchen, D. J., Bleem, A., Bu, L., Mallinson, S. J., Allen, M. D., ... & DuBois, J. L. (2021). Engineering a cytochrome P450 for demethylation of lignin-derived aromatic aldehydes. JACS Au, 1(3), 252-261.en_US
dc.identifier.issn2691-3704
dc.identifier.urihttps://scholarworks.montana.edu/handle/1/17036
dc.language.isoen_USen_US
dc.publisherAmerican Chemical Societyen_US
dc.rightscc-byen_US
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/en_US
dc.subjectcytochrome p450en_US
dc.titleEngineering a Cytochrome P450 for Demethylation of Lignin-Derived Aromatic Aldehydesen_US
dc.typeArticleen_US
mus.citation.extentfirstpage252en_US
mus.citation.extentlastpage261en_US
mus.citation.issue3en_US
mus.citation.journaltitleJACS Auen_US
mus.citation.volume1en_US
mus.data.thumbpage256en_US
mus.identifier.doi10.1021/jacsau.0c00103en_US
mus.relation.collegeCollege of Letters & Scienceen_US
mus.relation.departmentChemistry & Biochemistryen_US
mus.relation.universityMontana State University - Bozemanen_US

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