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Purification, molecular cloning, and expression of the gene encoding fatty acid 13-hydroperoxide lyase from guava fruit (Psidium guajava)
Authors:Nathalie Tijet  Urs Wäspi  Duncan J H Gaskin  Peter Hunziker  Bernard L Muller  Evgeny N Vulfson  Alan Slusarenko  Alan R Brash  Ian M Whitehead
Affiliation:(1) Department of Pharmacology, Vanderbilt University, 23rd Ave. at Pierce, 37232 Nashville, Tennessee;(2) Department of Plant Biology, University of Zürich, CH-8008, Switzerland;(3) Department of Macromolecular Sciences, Institute of Food Research, Reading RG6 6BZ, Berkshire, England;(4) Department of Biochemistry, University of Zürich, CH-8057, Switzerland;(5) Firmenich S.A., CH-1211 Geneva 8, Switzerland;(6) Present address: Department of Entomology, Forbes 410, University of Arizona, P.O. Box 210036, 85721-0036 Tucson, AZ;(7) Present address: Institute of Food Research, Norwich Research Park, Colney, NR4 7UA Norwich, England;(8) Institut für Biologie III (Plant Physiology), RWTH Aachen, Worringerweg, D-52074 Aachen, Germany;(9) Present address: Firmenich Asia Pte. Ltd., 10 Tuas West Road, 638377, Singapore
Abstract:Guava fruit was identified as a particularly rich source of 13-hydroperoxide lyase activity. The enzyme proved stable to chromatographic procedures and was purified to homogeneity. Based on gel filtration and gel electrophoresis, the native enzyme appears to be a homotetramer with subunits of 55 kD. Starting with primers based on the peptide sequence, the enzyme was cloned by polymerase chain reaction with 3′ and 5′ rapid amplification of cDNA ends. The sequence shows approximately 60–70% identity to known 13-hydroperoxide lyases and is classified in cytochrome P450 74B subfamily as CYP74B5. The cDNA was expressed in Escherichia coli (BL21 cells), with optimal enzyme activity obtained in the absence of isopropyl-β-d-thiogalactopyranoside and σ-aminolevulinic acid. The expressed enzyme metabolized 13(S)-hydroperoxylinolenic acid over 10-fold faster than 13(S)-hydroperoxylinoleic acid and the 9-hydroperoxides of linoleic and linolenic acids. 13(S)-Hydroperoxylinolenic acid was converted to 12-oxododec-9(Z)-enoic acid and 3(Z)-hexenal, as identified by gas chromatography-mass spectrometry. The turnover number with this substrate, with enzyme concentration estimated from the Soret absorbance, was≈2000/s, comparable to values reported for the related allene oxide synthases. Distinctive features of the guava 13-hydroperoxide lyase and related cytochrome P450 are discussed.
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