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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Emerging trends in research on spatial and temporal organization of terpenoid indole alkaloid pathway in Catharanthus roseus: A literature update
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Emerging trends in research on spatial and temporal organization of terpenoid indole alkaloid pathway in Catharanthus roseus: A literature update

机译:长春花中萜类吲哚生物碱途径时空组织研究的新兴趋势:文献更新

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Catharanthus roseus (The Madagaskar Periwinkle) plant is commercially valued for harbouring more than 130 bioactive terpenoid indole alkaloids (TIAs). Amongst these, two of the leaf-derived bisindole alkaloids-vinblastine and vincristine-are widely used in several anticancer chemotherapies. The great pharmacological values, low in planta occurrence, unavailability of synthetic substitutes and exorbitant market cost of these alkaloids have prompted scientists to understand the basic architecture and regulation of biosynthesis of these TIAs in C. roseus plant and its cultured tissues. The knowledge gathered over a period of 30 years suggests that the TIA biosynthesis is highly regulated by developmental and environmental factors and operates through a complex multi-step enzymatic network. Extensive spatial and temporal cross talking also occurs at inter- and intracellular levels in different plant organs during TIA biogenesis. A close association of indole, methylerythritol phosphate and secoiridoid monoterpenoid pathways and involvement of at least four cell types (epidermis, internal phloem-associated parenchyma, laticifers and idioblasts) and five intracellular compartments (chloroplast, vacuole, nucleus, endoplasmic reticulum and cytosol) have been implicated with this biosynthetic mechanism. Accordingly, the research in this area is primarily advancing today to address and resolve six major issues namely: precise localization and expression of pathway enzymes using modern in situ RNA hybridization tools, mechanisms of intra- and intercellular trafficking of pathway intermediates, cloning and functional validation of genes coding for known or hitherto unknown pathway enzymes, mechanism of global regulation of the pathway by transcription factors, control of relative diversion of metabolite flux at crucial branch points and finally, strategising the metabolic engineering approaches to improve the productivity of the desired TIAs in plant or corresponding cultured tissues. The present literature update has been compiled to provide a brief overview of some of the emerging developments in our current understanding of TIA metabolism in C. roseus.
机译:长春花(Madagaskar长春花)植物因具有130多种生物活性萜类吲哚生物碱(TIA)而具有商业价值。其中,来自叶的双吲哚生物碱中的两种(长春碱和长春新碱)广泛用于几种抗癌化学疗法中。这些生物碱的巨大药理价值,低植物发生率,无法使用合成替代物以及过高的市场成本促使科学家们了解玫瑰色梭菌及其培养组织中这些TIA的基本结构和生物合成调控。 30年来积累的知识表明,TIA生物合成受到发育和环境因素的高度调节,并通过复杂的多步酶网络进行操作。在TIA生物发生过程中,不同植物器官的细胞间和细胞内水平也会发生广泛的时空对话。吲哚,甲基赤藓糖醇磷酸和类secrididoid单萜类途径密切相关,并且涉及至少四种细胞类型(表皮,韧皮部相关的薄壁组织,胶质细胞和成纤维细胞)和五个细胞内区室(叶绿体,液泡,核,内质网和胞质溶胶)与这种生物合成机制有关。因此,该领域的研究今天主要向前发展,以解决和解决六个主要问题,即:使用现代原位RNA杂交工具精确定位和表达途径酶,途径中间体的细胞内和细胞间运输机制,克隆和功能验证编码已知或迄今未知途径酶的基因,转录因子对途径的整体调控机制,关键分支点代谢物通量的相对转移控制的机制,以及最终制定代谢工程方法以提高所需TIA的生产率植物或相应的培养组织。目前的文献更新已经汇编,以简要概述我们目前对玫瑰色梭菌TIA代谢的一些新兴发展。

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