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Solanesol: a review of its resources, derivatives, bioactivities, medicinal applications, and biosynthesis

机译:Solanesol:对其资源,衍生物,生物活化,药用应用和生物合成的审查

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Solanesol, which mainly accumulates in solanaceous crops, including tobacco, tomato, potato, eggplant, and pepper plants, is a long-chain polyi-soprenoid alcohol compound with nine isoprene units. Chemical synthesis of solanesol is difficu therefore, solanesol is primarily extracted from solanaceous crops, particularly tobacco leaves. In plants, solanesol exists in both free and esterified forms, and its accumulation is influenced by genetic and environmental factors. Solanesol is widely used in the pharmaceutical industry as an intermediate for the synthesis of ubiquinone drugs, such as coenzyme Q10 and vitamin K2. Solanesol possesses antibacterial, antifungal, antiviral, anticancer, anti-inflammatory, and anti-ulcer activities, and solanesol derivatives also have anti-oxidant and antitumour activities, in addition to other bioactivities. Solanesol derivatives can also be used for the treatment of cardiovascular disease, osteoporosis, acquired immune deficiency syndrome, and wound healing. Solanesol biosynthesis occurs in plastids of higher plants via the 2-C-methyl-D-erythritol-4-phosphate (MEP) pathway. The key enzymes in solanesol biosynthesis, including 1-deoxy-D-xylulose-5-phosphate synthase, 1-deoxy-D-xylulose-5-phosphate-reductoisomerase, isopentenyl pyrophos- phate isomerase, and solanesyl diphosphate synthase, are also important regulators of the MEP pathway, and their overexpression is favourable for downstream metabolic flow, further promoting the synthesis of downstream metabolites, such as solanesol. Future studies should determine the pharmacokinetic properties of solanesol and its derivatives and investigate the metabolic pathways and regulatory mechanisms mediating solanesol biosynthesis, metabolic and genetic engineering of solanesol, the synthetic biology of solanesol, and the physiological role of solanesol. In the present review, we systematically summarise current knowledge on solanesol resources, derivatives, bioactivities and medicinal applications, metabolic pathways, and key biosynthetic enzymes.
机译:主要积聚在溶于溶于溶于噻吩,番茄,马铃薯,茄子和辣椒植物中的茄钠醇是一种长链多粒子醇化合物,具有九个异戊二烯单元。溶烷醇的化学合成难度;因此,索拉尼醇主要从溶于溶于溶于溶于溶于溶于溶于溶于溶质作物,特别是烟草叶。在植物中,Solanesol在游离和酯化的形式中存在,其积累受到遗传和环境因素的影响。 Solanesol广泛用于制药行业,作为合成泛醌药物的中间体,例如辅酶Q10和维生素K2。 Solanesol具有抗菌,抗真菌,抗病毒,抗癌,抗炎和抗溃疡活性,除了其他生物活跃之外,Solanesol衍生物还具有抗氧化剂和抗肿瘤活动。茄肉衍生物还可用于治疗心血管疾病,骨质疏松症,获得的免疫缺乏综合征和伤口愈合。 Solanesol生物合成通过2-C-甲基-D-赤藓糖醇-4-磷酸(MEP)途径在高等植物的塑性中发生。溶烷醇生物合成中的关键酶,包括1-脱氧-D-木糖糖-5-磷酸合酶,1-脱氧-D-木糖 - 5-磷酸氧化酯酶,异戊烯基芘异构酶和溶甲二磷酸二磷酸合成酶,也是重要的调节剂在MEP途径中,它们的过表达有利于下游代谢流动,进一步促进下游代谢物的合成,例如茄蛋白。未来的研究应确定茄果醇及其衍生物的药代动力学特性,并研究胶粘剂生物合成,茄果合成生物学的溶那酚生物合成,代谢和基因工程的代谢途径和调节机制,以及索尔糖醇的生理作用。在本综述中,我们系统地概述了目前关于溶烷醇资源,衍生物,生物活力和药用应用,代谢途径和关键生物合成酶的知识。

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