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Bioactive diterpenoid metabolism and cytotoxic activities of genetically transformed Euphorbia lathyris roots

机译:生物活性二萜代谢和遗传转化的大戟属植物根系的细胞毒性活性

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Plants in the genus Euphorbia produce a wide variety of pharmacologically active diterpenoids with anticancer, multidrug resistance reversal, and antiviral properties. Some are the primary industrial source of ingenol mebutate, which is approved for treatment of the precancerous skin condition actinic keratosis. Similar to other high value phytochemicals, Euphorbia diterpenoids accumulate at low concentrations in planta and chemical synthesis produces similarly low yields. We established genetically transformed root cultures of Euphorbia lathryis as a strategy to gain greater access to diterpenoids from this genus. Transformed roots produced via stem explant infection with Agrobacterium rhizogenes strain 15834 recapitulated the metabolite profiles of field-grown plant roots and aerial tissues. Several putative diterpenoids were present in transformed roots, including ingenol and closely related structures, indicating that mot cultures are a promising approach to Euphorbia-specific diterpenoid production. Treatment with methyl jasmonate led to a significant, albeit transient increase in mRNA levels of early diterpenoid biosynthetic enzymes (farnesyl pyrophosphate synthase, geranylgeranyl pyrophosphate synthase, and casbene synthase), suggesting that elicitation could prove useful in future pathway characterization and metabolic engineering efforts. We also show the potential of transformed E. lathyris root cultures for natural product drug discovery applications by measuring their cytotoxic activities using a panel of human carcinoma cell lines derived from prostate, cervix, breast, and lung.
机译:在大戟属植物的植物产生多种具有抗癌,多药耐药逆转,和抗病毒特性的药理学活性的二萜类化合物。有些是巨大戟二萜甲基丁烯酸酯,它被批准用于治疗癌前皮肤状况光化性角化病的主要工业来源。类似于其他高价值的植物化学物质,大戟二萜类化合物在低浓度下在植物中积累和化学合成产生类似的低的产率。我们建立了遗传转化的根培养的大戟lathryis以获得从该属植物到二萜类化合物更大的访问的策略。通过茎外植感染产生与发根农杆菌转化的菌株根概括15834田间生长的植物的根和空中组织的代谢物谱。一些假定二萜类化合物存在于转型根,包括巨大戟密切相关的结构,这表明MOT文化是一个很有前途的方法,以大戟特定的二萜生产。与导致年初二萜类合成酶(法尼基焦磷酸合酶,香叶基焦磷酸合成酶,和蓖麻烯合酶),这表明启发式的mRNA水平显著,虽然短暂升高茉莉酮酸甲酯处理可以证明在未来的途径表征和代谢工程的努力是有用的。我们还表明转化的大肠杆菌续随子根培养物为天然产物药物发现应用的通过使用从前列腺癌,宫颈癌,乳腺癌和肺癌衍生的人癌细胞系的面板测量它们的细胞毒活性的潜力。

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