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通过¹³C标记和综合键能平衡对长春花毛状根中心碳代谢中的通量进行定量分析。

Flux quantification in central carbon metabolism of Catharanthus roseus hairy roots by 13C labeling and comprehensive bondomer balancing.

作者信息

Sriram Ganesh, Fulton D Bruce, Shanks Jacqueline V

机构信息

Department of Chemical and Biological Engineering, 3031 Sweeney Hall, Iowa State University, Ames, IA 50011, USA.

出版信息

Phytochemistry. 2007 Aug-Sep;68(16-18):2243-57. doi: 10.1016/j.phytochem.2007.04.009. Epub 2007 May 25.

DOI:10.1016/j.phytochem.2007.04.009
PMID:17532015
Abstract

Methods for accurate and efficient quantification of metabolic fluxes are desirable in plant metabolic engineering and systems biology. Toward this objective, we introduce the application of "bondomers", a computationally efficient and intuitively appealing alternative to the commonly used isotopomer concept, to flux evaluation in plants, by using Catharanthus roseus hairy roots as a model system. We cultured the hairy roots on (5% w/w U-(13)C, 95% w/w naturally abundant) sucrose, and acquired two-dimensional [(13)C, (1)H] and [(1)H, (1)H] NMR spectra of hydrolyzed aqueous extract from the hairy roots. Analysis of these spectra yielded a data set of 116 bondomers of beta-glucans and proteinogenic amino acids from the hairy roots. Fluxes were evaluated from the bondomer data by using comprehensive bondomer balancing. We identified most fluxes in a three-compartmental model of central carbon metabolism with good precision. We observed parallel pentose phosphate pathways in the cytosol and the plastid with significantly different fluxes. The anaplerotic fluxes between phosphoenolpyruvate and oxaloacetate in the cytosol and between malate and pyruvate in the mitochondrion were relatively high (60.1+/-2.5 mol per 100 mol sucrose uptake, or 22.5+/-0.5 mol per 100 mol mitochondrial pyruvate dehydrogenase flux). The development of a comprehensive flux analysis tool for this plant hairy root system is expected to be valuable in assessing the metabolic impact of genetic or environmental changes, and this methodology can be extended to other plant systems.

摘要

在植物代谢工程和系统生物学中,需要准确高效地定量代谢通量的方法。为实现这一目标,我们引入了“键异构体”的应用,它是一种计算效率高且直观吸引人的方法,可替代常用的同位素异构体概念,用于植物中的通量评估,我们以长春花毛状根为模型系统进行研究。我们在(5% w/w U-(13)C,95% w/w天然丰度)蔗糖上培养毛状根,并获取了毛状根水解水提取物的二维[(13)C, (1)H]和[(1)H, (I)H] NMR谱。对这些谱的分析产生了来自毛状根的β-葡聚糖和蛋白质氨基酸的116个键异构体的数据集。通过使用综合键异构体平衡从键异构体数据评估通量。我们在中心碳代谢的三室模型中以良好的精度确定了大多数通量。我们观察到细胞质和质体中的戊糖磷酸途径平行,但通量有显著差异。细胞质中磷酸烯醇丙酮酸和草酰乙酸之间以及线粒体中苹果酸和丙酮酸之间的回补通量相对较高(每100摩尔蔗糖摄取量为60.1±2.5摩尔,或每100摩尔线粒体丙酮酸脱氢酶通量为22.5±0.5摩尔)。预计为这种植物毛状根系统开发的综合通量分析工具在评估遗传或环境变化的代谢影响方面将很有价值,并且这种方法可以扩展到其他植物系统。

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