Molecular characterization of flayanone 3β-hydroxylases
Consensus sequence, comparison with related enzymes and the role of conserved histidine residues
Article first published online: 3 MAR 2005
DOI: 10.1111/j.1432-1033.1993.tb18301.x
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How to Cite
BRITSCH, L., DEDIO, J., SAEDLER, H. and FORKMANN, G. (1993), Molecular characterization of flayanone 3β-hydroxylases. European Journal of Biochemistry, 217: 745–754. doi: 10.1111/j.1432-1033.1993.tb18301.x
Publication History
- Issue published online: 3 MAR 2005
- Article first published online: 3 MAR 2005
- (Received April 1/June 30, 1993) – EJB 93 0471/3
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A heterologous cDNA probe from Petunia hybrida was used to isolate flavanone-3β-hydroxylase-encoding cDNA clones from carnation (Dianthus caryophyllus), china aster (Callistephus chinensis) and stock (Matthiola incana). The deduced protein sequences together with the known sequences of the enzyme from P. hybrida, barley (Hordeum vulgare) and snapdragon (Antirrhinum majus) enabled the determination of a consensus sequence which revealed an overall 84% similarity (53% identity) of flavanone 3β-hydroxylases from the different sources. Alignment with the sequences of other known enzymes of the same class and to related non-heme iron-(II) enzymes demonstrated the strict genetic conservation of 14 amino acids, in particular, of threc histidines and an aspartic acid. The conservation of the histidine motifs provides strong support for the possible conservation of structurally similar iron-binding sites in these enzymes. The putative role of histidines as chelators of ferrous ions in the active site of flavanone 3β-hydroxylases was corroborated by diethyl-pyrocarbonate modification of the partially purified recombinant Petunia enzyme.

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