Institute of Food Science, Cornell University-NYSAES, Geneva, New York 14456-0462.
Plant Physiol. 1991 Feb;95(2):570-6. doi: 10.1104/pp.95.2.570.
A UDPGlc:flavonol O(3)-glucosyltransferase (EC 2.4.1.91) that catalyzes the formation of quercetin and kaempferol O(3)-glucosides has been purified about 1450-fold from illuminated red cabbage (Brassica oleracea cv Red Danish) seedlings with a 3.3% yield. Purification of the enzyme was achieved by (NH(4))(2)SO(4)-precipitation, gel-filtration, ion-exchange chromatography on DEAE-Bio-Gel and Q-Sepharose, chromatofocusing, and electrophoresis in nondenaturing polyacrylamide (10%) gels. The enzyme preparation had a pH optimum between 5.8 and 6.2, isoelectric point in the pH range 4.25 to 4.55, a M(r) of 59,000, and it was composed of two similar subunits of M(r) 29,500. The glucosyltransferase reached half substrate saturation at 180 micromolar (UDPGlc) and 7 micromolar (quercetin) concentrations. Kaempferol, which was glucosylated at a relative rate of 87%, had a lesser affinity for the enzyme (K(m)~12 micromolar). Flavanones, flavanols, flavones, dihydroflavonols, and anthocyanidins were not readily utilized as substrates, suggesting that the enzyme is specific for flavonol glucoside biosynthesis.
从光照的红甘蓝(甘蓝变种红丹麦)幼苗中纯化出一种 UDPGlc:黄酮醇 O(3)-葡萄糖基转移酶(EC 2.4.1.91),该酶可催化槲皮素和山柰酚 O(3)-葡萄糖苷的形成,其比活约为 1450 倍,收率为 3.3%。该酶的纯化是通过(NH(4))(2)SO(4)-沉淀、凝胶过滤、DEAE-Bio-Gel 和 Q-Sepharose 离子交换色谱、等电聚焦和非变性聚丙烯酰胺(10%)凝胶电泳实现的。酶制剂的 pH 最适范围为 5.8 至 6.2,等电点在 pH 4.25 至 4.55 范围内,Mr 为 59,000,由两个相似的亚基组成,Mr 为 29,500。葡萄糖基转移酶在 180 微摩尔(UDPGlc)和 7 微摩尔(槲皮素)浓度下达到半底物饱和。山奈酚的相对反应速率为 87%,对酶的亲和力较低(K(m)~12 微摩尔)。黄烷酮、黄烷醇、黄酮、二氢黄酮醇和花色苷不易作为底物被利用,表明该酶对黄酮醇糖苷生物合成具有特异性。