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Pool size measurements facilitate the determination of fluxes at branching points in non-stationary metabolic flux analysis: the case of Arabidopsis thaliana

机译:池大小测量有助于非平稳代谢通量分析中分支点通量的确定:拟南芥

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摘要

Pool size measurements are important for the estimation of absolute intracellular fluxes in particular scenarios based on data from heavy carbon isotope experiments. Recently, steady-state fluxes estimates were obtained for central carbon metabolism in an intact illuminated rosette of Arabidopsis thaliana grown photoautotrophically (Szecowka et al., ; Heise et al., ). Fluxes were estimated therein by integrating mass-spectrometric data of the dynamics of the unlabeled metabolic fraction, data on metabolic pool sizes, partitioning of metabolic pools between cellular compartments and estimates of photosynthetically inactive pools, with a simplified model of plant central carbon metabolism. However, the fluxes were determined by treating the pool sizes as fixed parameters. Here we investigated whether and, if so, to what extent the treatment of pool sizes as parameters to be optimized in three scenarios may affect the flux estimates. The results are discussed in terms of benchmark values for canonical pathways and reactions, including starch and sucrose synthesis as well as the ribulose-1,5-bisphosphate carboxylation and oxygenation reactions. In addition, we discuss pathways emerging from a divergent branch point for which pool sizes are required for flux estimation, irrespective of the computational approach used for the simulation of the observable labeling pattern. Therefore, our findings indicate the necessity for development of techniques for accurate pool size measurements to improve the quality of flux estimates from non-stationary flux estimates in intact plant cells in the absence of alternative flux measurements.
机译:池大小测量对于基于重碳同位素实验的数据在特定情况下估算绝对细胞内通量非常重要。最近,在光自养的拟南芥完整光照下的玫瑰花丛中获得了中心碳代谢的稳态通量估计值(Szecowka等人; Heise等人)。通过将未标记代谢部分动力学的质谱数据,代谢池大小的数据,细胞室之间的代谢池分配以及光合非活性池的估计与植物中心碳代谢的简化模型相集成,从而估算通量。但是,通量是通过将池大小视为固定参数来确定的。在这里,我们调查了在三种情况下将池大小作为要优化的参数的处理是否以及在何种程度上可能会影响通量估计。将根据标准途径和反应的基准值(包括淀粉和蔗糖的合成以及核糖-1,5-双磷酸酯的羧化和氧合反应)对结果进行讨论。此外,我们讨论了从发散分支点出现的路径,对于该路径,通量估计需要池大小,而与用于模拟可观察标记图案的计算方法无关。因此,我们的发现表明开发精确池大小测量技术的必要性,以在没有替代通量测量的情况下提高完整植物细胞中非平稳通量估计的通量估计质量。

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