Hayashi H, Huang P, Inoue K, Hiraoka N, Ikeshiro Y, Yazaki K, Tanaka S, Kushiro T, Shibuya M, Ebizuka Y
Gifu Pharmaceutical University, Japan.
Eur J Biochem. 2001 Dec;268(23):6311-7. doi: 10.1046/j.0014-2956.2001.02588.x.
An oxidosqualene cyclase cDNA, LcIMS1, was isolated from cultured cells of Luffa cylindrica Roem. by heterologous hybridization with cDNA of Glycyrrhiza glabra beta-amyrin synthase. Expression of LcIMS1 in yeast lacking endogenous oxidosqualene cyclase activity resulted in the accumulation of isomultiflorenol, a triterpene. This is consistent with LcIMS1 encoding isomultiflorenol synthase, an oxidosqualene cyclase involved in bryonolic acid biosynthesis in cultured Luffa cells. The deduced amino-acid sequence of LcIMS1 shows relatively low identity with other triterpene synthases, suggesting that isomultiflorenol synthase should be classified into a new group of triterpene synthases. The levels of isomultiflorenol synthase and cycloartenol synthase mRNAs, which were measured with gene-specific probes, correlated with the accumulation of bryonolic acid and phytosterols over a growth cycle of the Luffa cell cultures. Isomultiflorenol synthase mRNA was low during the early stages of cell growth and accumulated to relatively high levels in the late stages. Induction of this mRNA preceded accumulation of bryonolic acid. In contrast, cycloartenol synthase mRNA accumulated in the early stages of the culture cycle, whereas phytosterols accumulated at the same relative rate throughout the whole growth cycle. These results suggest independent regulation of these two genes and of the accumulation of bryonolic acid and phytosterols.
通过与光果甘草β-香树脂醇合酶的cDNA进行异源杂交,从丝瓜的培养细胞中分离出一种氧化鲨烯环化酶cDNA,即LcIMS1。LcIMS1在缺乏内源性氧化鲨烯环化酶活性的酵母中表达,导致三萜类化合物异多花素醇的积累。这与LcIMS1编码异多花素醇合酶一致,异多花素醇合酶是一种参与丝瓜培养细胞中苔藓酸生物合成的氧化鲨烯环化酶。LcIMS1推导的氨基酸序列与其他三萜合酶的同源性相对较低,这表明异多花素醇合酶应归类为三萜合酶的一个新组。用基因特异性探针测量的异多花素醇合酶和环阿屯醇合酶mRNA水平,与丝瓜细胞培养物生长周期中苔藓酸和植物甾醇的积累相关。异多花素醇合酶mRNA在细胞生长早期水平较低,在后期积累到相对较高水平。该mRNA的诱导先于苔藓酸的积累。相反,环阿屯醇合酶mRNA在培养周期早期积累,而植物甾醇在整个生长周期中以相同的相对速率积累。这些结果表明这两个基因以及苔藓酸和植物甾醇的积累受到独立调控。