首页> 美国卫生研究院文献>Plant Physiology >13C-Tracer and Gas Chromatography-Mass Spectrometry Analyses Reveal Metabolic Flux Distribution in the Oleaginous Microalga Chlorella protothecoides
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13C-Tracer and Gas Chromatography-Mass Spectrometry Analyses Reveal Metabolic Flux Distribution in the Oleaginous Microalga Chlorella protothecoides

机译:13C-示踪剂和气相色谱-质谱联用分析揭示了含油微藻原球藻中的代谢通量分布

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摘要

The green alga Chlorella protothecoides has received considerable attention because it accumulates neutral triacylglycerols, commonly regarded as an ideal feedstock for biodiesel production. In order to gain a better understanding of its metabolism, tracer experiments with [U-13C]/[1-13C]glucose were performed with heterotrophic growth of C. protothecoides for identifying the metabolic network topology and estimating intracellular fluxes. Gas chromatography-mass spectrometry analysis tracked the labeling patterns of protein-bound amino acids, revealing a metabolic network consisting of the glycolysis, the pentose phosphate pathway, and the tricarboxylic acid cycle with inactive glyoxylate shunt. Evidence of phosphoenolpyruvate carboxylase, phosphoenolpyruvate carboxykinase, and malic enzyme activity was also obtained. It was demonstrated that the relative activity of the pentose phosphate pathway to glycolysis under nitrogen-limited environment increased, reflecting excess NADPH requirements for lipid biosynthesis. Although the growth rate and cellular oil content were significantly altered in response to nitrogen limitation, global flux distribution of C. protothecoides remained stable, exhibiting the rigidity of central carbon metabolism. In conclusion, quantitative knowledge on the metabolic flux distribution of oleaginous alga obtained in this study may be of value in designing strategies for metabolic engineering of desirable bioproducts.
机译:绿藻原球藻小球藻由于积累了中性三酰基甘油而备受关注,而中性三酰基甘油通常被认为是生产生物柴油的理想原料。为了更好地了解其代谢,进行了[U- 13 C] / [1- 13 C]葡萄糖与C的异养生长的示踪实验。 protothecoides用于识别代谢网络拓扑结构和估计细胞内通量。气相色谱-质谱分析跟踪了蛋白质结合的氨基酸的标记模式,揭示了由糖酵解,戊糖磷酸途径和带有非活性乙醛酸分流器的三羧酸循环组成的代谢网络。还获得了磷酸烯醇丙酮酸羧化酶,磷酸烯醇丙酮酸羧化激酶和苹果酸酶活性的证据。结果表明,在氮限制的环境下,磷酸戊糖途径对糖酵解的相对活性增加,反映了脂质生物合成中过量的NADPH需求。尽管生长速度和细胞含油量响应氮限制而发生了显着变化,但原壳线虫的总体通量分布仍保持稳定,表现出中央碳代谢的刚性。总之,在这项研究中获得的关于含油藻类代谢通量分布的定量知识可能对设计所需生物产品的代谢工程设计策略有价值。

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