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田野菊花朵提取物中UDP-葡萄糖:黄酮醇7-O-葡萄糖基转移酶活性

UDP-glucose: flavonol 7-O-glucosyltransferase activity in flower extracts of Chrysanthemum segetum.

作者信息

Stich K, Halbwirth H, Wurst F, Forkmann G

机构信息

TU Wien, Institut für Angewandte Botanik, Technische Mikroskopie und Organische Rohstofflehre, Vienna, Austria.

出版信息

Z Naturforsch C J Biosci. 1997 Mar-Apr;52(3-4):153-8. doi: 10.1515/znc-1997-3-403.

Abstract

The yellow colour of Chrysanthemum segetum petals is due to the presence of the 7-O-glucosides of quercetin and particularly gossypetin (8-hydroxyquercetin). In petal extracts of C. segetum an enzyme was demonstrated which catalyzes the transfer of the glucosyl moiety of uridine 5'-diphosphoglucose (UDPG) to the 7-hydroxyl group of flavonols with gossypetin and quercetin as the best substrates. Besides flavonols flavanones and flavones were found to be glucosylated in the 7-position. The pH-optimum of the reaction highly depended on the substrate used. With quercetin as substrate, maximal enzyme activity occurred at a pH of 8.25 and a temperature of 25 degrees C, but 7-O-glucosylation also proceeded at low temperatures. Studies on temperature stability revealed, that there was no influence on the glucosylation reaction up to 40 degrees C. Higher temperatures led to a loss of enzyme activity. Using gossypetin as a substrate a similar course of temperature stability was observed. Addition of Mg2+, Ca2+ and KCN slightly stimulated 7-O-glucosylation, whereas Co2+, Cu2+, Fe2+, Hg2+, p-hydroxymercuribenzoate and N-ethylmaleimide showed a strong inhibitory effect. Additional enzymatic studies were performed with the commercial strain "Stern des Orients" where gossypetin 7-O-glucoside is restricted to the inner parts of the petals. For enzyme extracts from both parts of the petals gossypetin was found to be the most attractive substrate. In comparison to quercetin (133.4 mu kat/kg protein) an about three times higher specific activity of the 7-O-glucosyltransferase(s) was determined with gossypetin (382.1 mu kat/kg protein) as substrate, indicating that hydroxylation of quercetin in 8-position to gossypetin precedes 7-O-glucosylation.

摘要

野菊花花瓣的黄色是由于存在槲皮素尤其是棉黄素(8 - 羟基槲皮素)的7 - O - 葡萄糖苷。在野菊花花瓣提取物中,已证实有一种酶,它催化尿苷5'-二磷酸葡萄糖(UDPG)的葡萄糖基部分转移到黄酮醇的7 - 羟基上,其中棉黄素和槲皮素是最佳底物。除了黄酮醇外,还发现黄烷酮和黄酮在7位被糖基化。反应的最适pH值高度依赖于所使用的底物。以槲皮素为底物时,最大酶活性出现在pH值为8.25、温度为25℃时,但7 - O - 糖基化在低温下也能进行。温度稳定性研究表明,在40℃以下对糖基化反应没有影响。温度更高会导致酶活性丧失。以棉黄素为底物时,观察到类似的温度稳定性过程。添加Mg2 +、Ca2 +和KCN会轻微刺激7 - O - 糖基化,而Co2 +、Cu2 +、Fe2 +、Hg2 +、对羟基汞苯甲酸和N - 乙基马来酰亚胺则显示出强烈的抑制作用。对商业品种“东方之星”进行了额外的酶学研究,在该品种中棉黄素7 - O - 葡萄糖苷仅限于花瓣内部。对于来自花瓣两部分的酶提取物,发现棉黄素是最具吸引力的底物。与槲皮素(133.4μkat/kg蛋白质)相比,以棉黄素(382.1μkat/kg蛋白质)为底物时,7 - O - 葡萄糖基转移酶的比活性约高3倍,这表明槲皮素在8位羟基化为棉黄素先于7 - O - 糖基化。

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