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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Quantitative quenching evaluation and direct intracellular metabolite analysis in Penicillium chrysogenum
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Quantitative quenching evaluation and direct intracellular metabolite analysis in Penicillium chrysogenum

机译:产黄青霉的定量猝灭评价和直接细胞内代谢物分析

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Sustained progress in metabolic engineering methodologies has stimulated new efforts toward optimizing fungal production strains such as through metabolite analysis of Penicillium chrysogenum industrial-scale processes. Accurate intracellular metabolite quantification requires sampling procedures that rapidly stop metabolism (quenching) and avoid metabolite loss via the cell membrane (leakage). When sampling protocols are validated, the quenching efficiency is generally not quantitatively assessed. For fungal metabolomics, quantitative biomass separation using centrifugation is a further challenge. In this study, P. chrysogenum intracellular metabolites were quantified directly from biomass extracts using automated sampling and fast filtration. A master/slave bioreactor concept was applied to provide industrial production conditions. Metabolic activity during sampling was monitored by ~(13)C tracing. Enzyme activities were efficiently stopped and metabolite leakage was absent. This work provides a reliable method for P. chrysogenum metabolomics and will be an essential base for metabolic engineering of industrial processes.
机译:代谢工程方法学的持续进步激发了优化真菌生产菌株的新努力,例如通过对黄青霉工业规模过程的代谢产物进行分析。准确的细胞内代谢物定量需要采样程序,以迅速停止新陈代谢(淬灭)并避免代谢物通过细胞膜流失(泄漏)。验证采样方案后,通常无法定量评估淬灭效率。对于真菌代谢组学,使用离心定量生物质分离是另一个挑战。在这项研究中,使用自动采样和快速过滤从生物质提取物中直接定量了产黄青霉的细胞内代谢产物。主/从生物反应器概念被用于提供工业生产条件。通过〜(13)C示踪监测采样过程中的代谢活性。有效地停止了酶的活动,并且没有代谢物泄漏。这项工作为产黄青霉的代谢组学提供了一种可靠的方法,并将成为工业过程代谢工程的重要基础。

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