TY - JOUR
T1 - Heterologous expression of two FAD-dependent oxidases with (S)-tetrahydroprotoberberine oxidase activity from Argemone mexicana and Berberis wilsoniae in insect cells
AU - Gesell, Andreas
AU - Chávez, Maria Luisa Díaz
AU - Kramell, Robert
AU - Piotrowski, Markus
AU - Macheroux, Peter
AU - Kutchan, Toni M.
N1 - Funding Information:
Acknowledgments The authors acknowledge Christian Böttcher (Biozentrum, Halle (Saale), GER) for technical assistance in the puri-Wcation of STOX protein. We thank Prof. Dr. Jürgen Ehlting (UVIC, Victoria BC, Canada) for interesting discussions on phylogenetics and Russ Chedgy (do.) for critical reading of the manuscript. This work was supported by the Deutsche Forschungsgemeinschaft, Bonn, Fonds der Chemischen Industrie, Frankfurt, the German Academic Exchange Service (DAAD), Bonn and Consejo Nacional de Ciencia y Tecnología (CONACyT) and Programa de Mejoramiento del Profesorado/Universi-dad Autónoma del Estado de Morelos (PROMEP/UAEM), Mexico.
PY - 2011/6
Y1 - 2011/6
N2 - Berberine, palmatine and dehydrocoreximine are end products of protoberberine biosynthesis. These quaternary protoberberines are elicitor inducible and, like other phytoalexins, are highly oxidized. The oxidative potential of these compounds is derived from a diverse array of biosynthetic steps involving hydroxylation, intra-molecular C-C coupling, methylenedioxy bridge formation and a dehydrogenation reaction as the final step in the biosynthesis. For the berberine biosynthetic pathway, the identification of the dehydrogenase gene is the last remaining uncharacterized step in the elucidation of the biosynthesis at the gene level. An enzyme able to catalyze these reactions, (S)-tetrahydroprotoberberine oxidase (STOX, EC 1.3.3.8), was originally purified in the 1980s from suspension cells of Berberis wilsoniae and identified as a flavoprotein (Amann et al. 1984). We report enzymatic activity from recombinant STOX expressed in Spodoptera frugiperda Sf9 insect cells. The coding sequence was derived successively from peptide sequences of purified STOX protein. Furthermore, a recombinant oxidase with protoberberine dehydrogenase activity was obtained from a cDNA library of Argemone mexicana, a traditional medicinal plant that contains protoberberine alkaloids. The relationship of the two enzymes is discussed regarding their enzymatic activity, phylogeny and the alkaloid occurrence in the plants. Potential substrate binding and STOX-specific amino acid residues were identified based on sequence analysis and homology modeling.
AB - Berberine, palmatine and dehydrocoreximine are end products of protoberberine biosynthesis. These quaternary protoberberines are elicitor inducible and, like other phytoalexins, are highly oxidized. The oxidative potential of these compounds is derived from a diverse array of biosynthetic steps involving hydroxylation, intra-molecular C-C coupling, methylenedioxy bridge formation and a dehydrogenation reaction as the final step in the biosynthesis. For the berberine biosynthetic pathway, the identification of the dehydrogenase gene is the last remaining uncharacterized step in the elucidation of the biosynthesis at the gene level. An enzyme able to catalyze these reactions, (S)-tetrahydroprotoberberine oxidase (STOX, EC 1.3.3.8), was originally purified in the 1980s from suspension cells of Berberis wilsoniae and identified as a flavoprotein (Amann et al. 1984). We report enzymatic activity from recombinant STOX expressed in Spodoptera frugiperda Sf9 insect cells. The coding sequence was derived successively from peptide sequences of purified STOX protein. Furthermore, a recombinant oxidase with protoberberine dehydrogenase activity was obtained from a cDNA library of Argemone mexicana, a traditional medicinal plant that contains protoberberine alkaloids. The relationship of the two enzymes is discussed regarding their enzymatic activity, phylogeny and the alkaloid occurrence in the plants. Potential substrate binding and STOX-specific amino acid residues were identified based on sequence analysis and homology modeling.
KW - Berberine bridge enzyme (BBE), FAD-dependent oxidase
KW - Flavoprotein, (S)-Tetrahydroprotoberberine oxidase (STOX)
KW - Protoberberine alkaloids
UR - http://www.scopus.com/inward/record.url?scp=79957606715&partnerID=8YFLogxK
U2 - 10.1007/s00425-011-1357-4
DO - 10.1007/s00425-011-1357-4
M3 - Article
C2 - 21327819
AN - SCOPUS:79957606715
SN - 0032-0935
VL - 233
SP - 1185
EP - 1197
JO - Planta
JF - Planta
IS - 6
ER -