S-ADENOSYL-L-METHIONINE - SCOULERINE-9-O-METHYLTRANSFERASE FROM CULTURED COPTIS-JAPONICA CELLS

Citation
F. Sato et al., S-ADENOSYL-L-METHIONINE - SCOULERINE-9-O-METHYLTRANSFERASE FROM CULTURED COPTIS-JAPONICA CELLS, Phytochemistry, 32(3), 1993, pp. 659-664
Citations number
13
Categorie Soggetti
Plant Sciences
Journal title
ISSN journal
00319422
Volume
32
Issue
3
Year of publication
1993
Pages
659 - 664
Database
ISI
SICI code
0031-9422(1993)32:3<659:S-SFC>2.0.ZU;2-R
Abstract
osyl-L-methionine:scoulerine-9-O-methyltransferase (SMT:EC 2.1.1.-), t he enzyme which catalyses the transfer of the S-methyl group of S-aden osyl-L-methionine to the 9-hydroxyl group of scoulerine, was purified to homogeneity from cultured Coptis japonica cells and its enzymologic al properties were characterized. The purified SMT had an apparent pI of 4.7, a native molecular mass of 120-140 kDa (gel filtration) and a subunit molecular mass of 41 kDa (SDS-polyacrylamide gel electrophores is). The enzyme did not require a divalent cation for activity, and th e addition of Ca2+, Cu2+ and Mn2+ at 1 mM inhibited enzyme activity by 64, 72 and 59%, respectively. p-Chloromercuribenzoate inhibited the a ctivity by 41% at 0.5 mM, whereas N-methylmaleimide and iodoacetamide were without effect even at 5 mM. Berberine and palmatine (end product s of the biosynthetic pathway of which SMT catalyses an intermediate s tep) also inhibited the activity by 70% at 5 mM. SMT was specific for the methylation of scoulerine. Substrate-saturation kinetics of the pu rified enzyme for (R,S)-scoulerine and SAM were typical Michaelis-Ment en type with K(m) values of 0.1 and 0.17 mM, respectively. The enzyme was inhibited by S-adenosylhomocysteine and its K(i) value for S-adeno sylhomocysteine versus SAM was 0.17 mM.