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首页> 外文期刊>Frontiers in Plant Science >Stable heterologous expression of biologically active terpenoids in green plant cells
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Stable heterologous expression of biologically active terpenoids in green plant cells

机译:生物活性萜类化合物在绿色植物细胞中的稳定异源表达

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Plants biosynthesize a great diversity of biologically active small molecules of interest for fragrances, flavors, and pharmaceuticals. Among specialized metabolites, terpenoids represent the greatest molecular diversity. Many terpenoids are very complex, and total chemical synthesis often requires many steps and difficult chemical reactions, resulting in a low final yield or incorrect stereochemistry. Several drug candidates with terpene skeletons are difficult to obtain by chemical synthesis due to their large number of chiral centers. Thus, biological production remains the preferred method for industrial production for many of these compounds. However, because these chemicals are often found in low abundance in the native plant, or are produced in plants which are difficult to cultivate, there is great interest in engineering increased production or expression of the biosynthetic pathways in heterologous hosts. Although there are many examples of successful engineering of microbes such as yeast or bacteria to produce these compounds, this often requires extensive changes to the host organism's metabolism. Optimization of plant gene expression, post-translational protein modifications, subcellular localization, and other factors often present challenges. To address the future demand for natural products used as drugs, new platforms are being established that are better suited for heterologous production of plant metabolites. Specifically, direct metabolic engineering of plants can provide effective heterologous expression for production of valuable plant-derived natural products. In this review, our primary focus is on small terpenoids and we discuss the benefits of plant expression platforms and provide several successful examples of stable production of small terpenoids in plants.
机译:植物可以生物合成多种多样的感兴趣的生物活性小分子,用于香料,调味剂和药物。在专门的代谢产物中,类萜代表最大的分子多样性。许多萜类化合物非常复杂,整个化学合成通常需要许多步骤和困难的化学反应,导致最终收率低或立体化学不正确。具有萜烯骨架的几种候选药物由于其大量的手性中心而难以通过化学合成获得。因此,对于许多这些化合物而言,生物生产仍然是工业生产的优选方法。然而,由于这些化学物质通常在天然植物中发现的丰度很低,或者是在难以耕种的植物中产生的,因此人们对工程化提高异源宿主中生物合成途径的产量或表达的兴趣很大。尽管有许多成功改造微生物(例如酵母或细菌)以生产这些化合物的例子,但这通常需要对宿主生物的代谢进行广泛的改变。植物基因表达的优化,翻译后蛋白质修饰,亚细胞定位和其他因素通常带来挑战。为了满足将来对用作药物的天然产品的需求,正在建立新的平台,该平台更适合于异源生产植物代谢产物。具体而言,植物的直接代谢工程可以提供有效的异源表达,以产生有价值的植物来源的天然产物。在本文中,我们主要关注小萜类化合物,我们讨论了植物表达平台的优势,并提供了一些在植物中稳定生产小萜类化合物的成功实例。

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