Botany Department, Indiana University, Bloomington, Indiana 47401.
Plant Physiol. 1968 Sep;43(9):1347-54. doi: 10.1104/pp.43.9.1347.
Extracts of the flower petals of Impatiens balsamina L. contain enzymes which catalyze the glycosylation of phenolic compounds. Enzymes have been extracted which glycosylate hydroquinone to arbutin and at least 3 different flavonols to the 3-monoglucoside. The hydroquinone glucosylating enzyme is similar to enzymes previously described except that it requires an unidentified low molecular weight cofactor. The glucosylation of flavonols follows normal enzyme kinetics; it requires a nucleotide diphosphate glucose donor for activity, and is made more evident by the presence of glucono-1:5-lactone, an inhibitor of endogenous glucosidases. It is suggested that the flavonol glucosylating enzyme acts naturally to glucosylate a precursor of both flavonols and anthocyanins to the 3-monoglucoside. The only elaboration of an anthocyanin observed with petal extracts was an acylation of pelargonidin-3-monoglucoside.
凤仙花花瓣提取物含有催化酚类化合物糖基化的酶。已经提取出将对苯二酚糖基化生成熊果苷和至少 3 种不同的黄酮醇生成 3-单葡萄糖苷的酶。该催化对苯二酚糖基化的酶与以前描述的酶相似,但它需要一种未鉴定的低分子量辅助因子。黄酮醇的糖基化遵循正常的酶动力学;它需要核苷酸二磷酸葡萄糖供体才能发挥活性,并且在存在葡萄糖酸-1:5-内酯时更为明显,葡萄糖酸-1:5-内酯是内源性糖苷酶的抑制剂。因此,黄酮醇糖基化酶的作用是将黄酮醇和花色苷的前体自然糖基化生成 3-单葡萄糖苷。在用花瓣提取物观察到的花色苷的唯一修饰是天竺葵苷-3-单葡萄糖苷的酰化。