Oguchi Yukie, Masada Sayaka, Kondo Toshiya, Terasaka Kazuyoshi, Mizukami Hajime
Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, 467-8603 Japan.
Plant Cell Physiol. 2007 Nov;48(11):1635-43. doi: 10.1093/pcp/pcm138. Epub 2007 Oct 15.
Catharanthus roseus cell suspension cultures converted exogenously added curcumin to a series of curcumin glucosides that possessed drastically enhanced water solubility. A cDNA clone encoding a glucosyltransferase responsible for glucosylation of curcumin to form curcumin 4'-O-glucoside was previously isolated, and in the present study a novel sugar-sugar glycosyltransferase, UDP-glucose:curcumin glucoside glucosyltransferase (UCGGT), was purified approximately 900-fold to apparent homogeneity from cultured cells of C. roseus. The purified enzyme (0.2% activity yield) catalyzed 1,6-glucosylation of curcumin 4'-O-glucoside to yield curcumin 4'-O-gentiobioside. The molecular weight and isoelectric point were estimated to be about 50 kDa and 5.2, respectively. The enzyme showed a pH optimum between 7.5 and 7.8. Both flavonoid 3-O- and 7-O-glucosides were also preferred acceptor substrates of the enzyme, whereas little activity was shown toward simple phenolic glucosides such as arbutin and glucovanillin, cyanogenic glucoside (prunasin) or flavonoid galactoside. These results suggest that UCGGT may also function in the biosynthesis of flavonoid glycosides in planta.
长春花细胞悬浮培养物将外源添加的姜黄素转化为一系列具有显著增强水溶性的姜黄素葡糖苷。先前已分离出一个编码负责姜黄素糖基化形成姜黄素4'-O-葡糖苷的葡糖基转移酶的cDNA克隆,在本研究中,一种新型的糖-糖糖基转移酶,UDP-葡萄糖:姜黄素葡糖苷葡糖基转移酶(UCGGT),从长春花培养细胞中纯化至表观均一性,纯化倍数约为900倍。纯化后的酶(活性回收率0.2%)催化姜黄素4'-O-葡糖苷的1,6-葡糖基化反应生成姜黄素4'-O-龙胆二糖苷。其分子量和等电点估计分别约为50 kDa和5.2。该酶的最适pH值在7.5至7.8之间。类黄酮3-O-葡糖苷和7-O-葡糖苷也是该酶优先选择的受体底物,而对诸如熊果苷、葡糖香草醛等简单酚类葡糖苷、生氰葡糖苷(苦杏仁苷)或类黄酮半乳糖苷几乎没有活性。这些结果表明UCGGT在植物中类黄酮糖苷的生物合成中可能也发挥作用。