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基于¹³C的酵母代谢通量分析:毕赤酵母实例

¹³C-based metabolic flux analysis in yeast: the Pichia pastoris case.

作者信息

Ferrer Pau, Albiol Joan

机构信息

Department of Chemical Engineering, Escola d'Enginyeria, Universitat Autònoma de Barcelona, Bellaterra (Cerdanyola del Vallès), Spain,

出版信息

Methods Mol Biol. 2014;1152:209-32. doi: 10.1007/978-1-4939-0563-8_13.

Abstract

Metabolic flux analysis based on tracing patterns of stable isotopes, particularly (13)C, comprises a set of methodologies to experimentally quantify intracellular biochemical reaction rates, i.e., to measure carbon flux distributions through a metabolic network. This allows quantifying the response of a metabolic network to an environmental or genetic perturbation (i.e., the metabolic phenotype). Here, we describe a protocol based on growing yeast on a (13)C-labelled substrate and subsequent NMR detection of (13)C-patterns in proteinogenic amino acids. To calculate metabolic fluxes, we describe two complementary mathematical approaches using available software; namely, an approach based on the estimation of local ratios in network nodes, and a method based on a global iterative fitting approach. Furthermore, we consider specificities of these protocols for their application to the yeast Pichia pastoris growing on multicarbon substrates other than glucose (glycerol), as well as the case when methanol is used as co-substrate in combination with glucose or glycerol.

摘要

基于稳定同位素(特别是¹³C)示踪模式的代谢通量分析,包含了一组用于实验性定量细胞内生化反应速率的方法,即测量通过代谢网络的碳通量分布。这使得能够定量代谢网络对环境或基因扰动的响应(即代谢表型)。在此,我们描述了一种基于在¹³C标记底物上培养酵母并随后通过核磁共振检测蛋白质氨基酸中¹³C模式的方案。为了计算代谢通量,我们使用可用软件描述了两种互补的数学方法;即基于网络节点局部比率估计的方法和基于全局迭代拟合方法的方法。此外,我们考虑了这些方案在应用于在除葡萄糖(甘油)以外的多碳底物上生长的巴斯德毕赤酵母时的特殊性,以及将甲醇与葡萄糖或甘油联合用作共底物的情况。

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