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Identification of an amino acid determinant of pH regiospecificity in a seed lipoxygenase from Momordica charantia
Authors:Hornung Ellen  Kunze Susan  Liavonchanka Alena  Zimmermann Grit  Kühn Diana  Fritsche Kathrin  Renz Andreas  Kühn Hartmut  Feussner Ivo
Institution:a Georg-August-University Göttingen, Albrecht-von-Haller Institute for Plant Sciences, Department for Plant Biochemistry, Justus-von-Liebig-Weg 11, D-37077 Göttingen, Germany
b Institute for Plant Genetics and Crop Plant Research (IPK), Corrensstraße 3, D-06466 Gatersleben, Germany
c BASF Plant Science GmbH, BPS HO1 - LI444, D-67117 Limburgerhof, Germany
d Humboldt-University Berlin, Universitätsklinikum Charité, Institute of Biochemistry, Monbijoustraße 2, D-10117 Berlin, Germany
Abstract:Lipoxygenases (LOX) form a heterogeneous family of lipid peroxidizing enzymes, which catalyze specific dioxygenation of polyunsaturated fatty acids. According to their positional specificity of linoleic acid oxygenation plant LOX have been classified into linoleate 9- and linoleate 13-LOX and recent reports identified a critical valine at the active site of 9-LOX. In contrast, more bulky phenylalanine or histidine residues were found at this position in 13-LOX. We have recently cloned a LOX-isoform from Momordica charantia and multiple amino acid alignments indicated the existence of a glutamine (Gln599) at the position were 13-LOX usually carry histidine or phenylalanine residues. Analyzing the pH-dependence of the positional specificity of linoleic acid oxygenation we observed that at pH-values higher than 7.5 this enzyme constitutes a linoleate 13-LOX whereas at lower pH, 9-H(P)ODE was the major reaction product. Site-directed mutagenesis of glutamine 599 to histidine (Gln599His) converted the enzyme to a pure 13-LOX. These data confirm previous observation suggesting that reaction specificity of certain LOX-isoforms is not an absolute enzyme property but may be impacted by reaction conditions such as pH of the reaction mixture. We extended this concept by identifying glutamine 599 as sequence determinant for such pH-dependence of the reaction specificity. Although the biological relevance for this alteration switch remains to be investigated it is of particular interest that it occurs at near physiological conditions in the pH-range between 7 and 8.
Keywords:AA  arachidonic acid  CP-HPLC  chiral phase-HPLC  RP-HPLC  reverse phase-HPLC  SP-HPLC  straight-phase-HPLC  hydroperoxy arachidonic acid  HPETE  13-H(P)OD  (13  9Z  11E)-13-hydro(pero)xy-9  11-octadecadienoic acid  9-H(P)OD  (9  10E  12Z)-9-hydro(pero)xy-10  12-octadecadienoic acid  LA  linoleic acid  LnA  α-linolenic acid  LOX  lipoxygenase(s)
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