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PMID: 11368174 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Hydroxylation of limonene enantiomers and analogs by recombinant (-)-limonene 3- and 6-hydroxylases from mint (Mentha) species: evidence for catalysis within sterically constrained active sites.

Archives of biochemistry and biophysics ·Vol. 387 ·No. 1 ·2001-03-01 ·Pages 125-36

Wüst M, Little DB, Schalk M, Croteau R

Abstract

Limonene enantiomers and substrate analogs, including specifically fluorinated derivatives, were utilized to probe active site interactions with recombinant (-)-(4S)-limonene-3-hydroxylase (CYP71D13) and (-)-(4S)-limonene-6-hydroxylase (CYP71D18) from mint (Mentha) species. (-)-(4S)-Limonene is hydroxylated by both enzymes at the designated C3- and C6-allylic positions, with strict regio- and stereospecificity and without detectable allylic rearrangement, to give the corresponding products (-)-trans-isopiperitenol and (-)-trans-carveol. CYP71D13-catalyzed hydroxylation of (+)-(4R)-limonene also yields the corresponding trans-3-hydroxylated product ((+)-transisopiperitenol); however, the C6-hydroxylase converts (+)-(4R)-limonene to a completely different product profile dominated by the enantiopure cis-6-hydroxylated product (+)-cis-carveol along with several minor products, including both enantiomers of the trans-6-hydroxylated product ((+/-)-trans-carveol), indicating allylic rearrangement during catalysis. These results demonstrate that the regiospecificity and facial stereochemistry of oxygen insertion is dictated by the absolute configuration of the substrate. Fluorinated limonene analogs are also tightly bound by both enzymes and hydroxylated at the topologically congruent positions in spite of the polarizing effect of the fluorine atom on substrate reactivity. This strict retention of oxygenation geometry suggests a rigid substrate orientation imposed by multiple hydrophobic active site contacts. Structurally simplified substrate analogs are hydroxylated at slower rates and with substantial loss of regiospecificity, consistent with a loss of active site complementarity. Evaluation of the product profiles generated allowed assessment of the role of hydrophobic contacts in orienting the substrate relative to the activated oxygen species.

MeSH Terms
Catalytic Domain Cyclohexane Monoterpenes Cyclohexenes Cytochrome P-450 Enzyme System/genetics,metabolism Fluorine Compounds/chemistry,metabolism Hydroxylation Lamiaceae/enzymology Limonene Mixed Function Oxygenases/genetics,metabolism Monoterpenes Plant Proteins Recombinant Proteins/metabolism Stereoisomerism Substrate Specificity Terpenes/chemistry,metabolism
Chemicals
8,9-dihydrolimonene Cyclohexane Monoterpenes Cyclohexenes Fluorine Compounds Monoterpenes Plant Proteins Recombinant Proteins Terpenes isopiperitenol Cytochrome P-450 Enzyme System carveol Limonene Mixed Function Oxygenases limonene-3-hydroxylase limonene-6-hydroxylase
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Wüst M
Institute of Biological Chemistry, Washington State University, Pullman 99164-6340, USA.
Little D B
Schalk M
Croteau R
Article Info
Journal
Archives of biochemistry and biophysics
Abbr.
Arch Biochem Biophys
ISSN
0003-9861
Published
2001-03-01
Pages
125-36
Language
English
Region
United States
NLM ID
0372430
Subset
IM
Grants
NIGMS NIH HHS · T32-GM08336 · United States
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