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ORCA2 转录因子在萜类吲哚生物碱途径的调控中发挥关键作用。

The ORCA2 transcription factor plays a key role in regulation of the terpenoid indole alkaloid pathway.

机构信息

Department of Plant Biology, University of Minnesota Twin Cities, Saint Paul, MN 55108, USA.

出版信息

BMC Plant Biol. 2013 Oct 8;13:155. doi: 10.1186/1471-2229-13-155.

Abstract

BACKGROUND

The terpenoid indole alkaloid (TIA) pathway leads to the production of pharmaceutically important drugs, such as the anticancer compounds vinblastine and vincristine. Unfortunately, these drugs are produced in trace amounts, causing them to be very costly. To increase production of these drugs, an improved understanding of the TIA regulatory pathway is needed. Towards this end, transgenic Catharanthus roseus hairy roots that overexpress the ORCA2 TIA transcriptional activator were generated and characterized.

RESULTS

Transcriptional profiling experiments revealed that overexpression of ORCA2 results in altered expression of key genes from the indole and terpenoid pathways, which produce precursors for the TIA pathway, and from the TIA pathway itself. In addition, metabolite-profiling experiments revealed that overexpression of ORCA2 significantly affects the levels of several TIA metabolites. ORCA2 overexpression also causes significant increases in transcript levels of several TIA regulators, including TIA transcriptional repressors.

CONCLUSIONS

Results presented here indicate that ORCA2 plays a critical role in regulation of TIA metabolism. ORCA2 regulates expression of key genes from both feeder pathways, as well as the genes (STR and SGD) encoding the enzymes that catalyze the first two steps in TIA biosynthesis. ORCA2 may play an especially important role in regulation of the downstream branches of the TIA pathway, as it regulates four out of five genes characterized from this part of the pathway. Regulation of TIA transcriptional repressors by ORCA2 may provide a mechanism whereby increases in TIA metabolite levels in response to external stimuli are transient and limited in magnitude.

摘要

背景

萜吲哚生物碱(TIA)途径导致产生具有重要药用价值的药物,如抗癌化合物长春碱和长春新碱。不幸的是,这些药物的产量非常低,导致它们非常昂贵。为了增加这些药物的产量,需要更好地了解 TIA 调节途径。为此,生成并表征了过量表达 ORCA2 TIA 转录激活子的转基因长春花毛状根。

结果

转录谱分析实验表明,ORCA2 的过表达导致吲哚和萜烯途径产生 TIA 途径前体的关键基因以及 TIA 途径本身的表达发生改变。此外,代谢产物分析实验表明,ORCA2 的过表达显著影响几种 TIA 代谢物的水平。ORCA2 的过表达还导致几种 TIA 调节剂的转录本水平显著增加,包括 TIA 转录抑制剂。

结论

这里呈现的结果表明,ORCA2 在 TIA 代谢的调节中起着关键作用。ORCA2 调节来自两个供体途径的关键基因的表达,以及编码 TIA 生物合成前两个步骤的酶的基因(STR 和 SGD)。ORCA2 可能在 TIA 途径下游分支的调节中起着特别重要的作用,因为它调节了该途径这一部分所特征的五个基因中的四个。ORCA2 对 TIA 转录抑制剂的调节可能提供了一种机制,通过该机制,对外界刺激的 TIA 代谢物水平的增加是短暂的,并且在幅度上是有限的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af69/3851283/5742fe960c7d/1471-2229-13-155-1.jpg

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