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C-13 based proteinogenic amino acid (PAA) and metabolic flux ratio analysis of Lactococcus lactis reveals changes in pentose phosphate (PP) pathway in response to agitation and temperature related stresses

机译:基于C-13的蛋白原氨基酸(paa)和乳酸乳球菌的代谢通量比分析揭示了磷酸戊酯(pp)途径响应于搅动和温度相关应力的变化

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摘要

Lactococcus lactis subsp. cremoris MG1363 is an important starter culture for dairy fermentation. During industrial fermentations, L. lactis is constantly exposed to stresses that affect the growth and performance of the bacterium. Although the response of L. lactis to several stresses has been described, the adaptation mechanisms at the level of in vivo fluxes have seldom been described. To gain insights into cellular metabolism, 13C metabolic flux analysis and gas chromatography mass spectrometry (GC-MS) were used to measure the flux ratios of active pathways in the central metabolism of L. lactis when subjected to three conditions varying in temperature (30 degrees C, 37 degrees C) and agitation (with and without agitation at 150 rpm). Collectively, the concentrations of proteinogenic amino acids (PAAs) and free fatty acids (FAAs) were compared, and Pearson correlation analysis (r) was calculated to measure the pairwise relationship between PAAs. Branched chain and aromatic amino acids, threonine, serine, lysine and histidine were correlated strongly, suggesting changes in flux regulation in glycolysis, the pentose phosphate (PP) pathway, malic enzyme and anaplerotic reaction catalysed by pyruvate carboxylase (pycA). Flux ratio analysis revealed that glucose was mainly converted by glycolysis, highlighting the stability of L. lactis central carbon metabolism despite different conditions. Higher flux ratios through oxaloacetate (OAA) from pyruvate (PYR) reaction in all conditions suggested the activation of pyruvate carboxylate (pycA) in L. lactis, in response to acid stress during exponential phase. Subsequently, more significant flux ratio differences were seen through the oxidative and non-oxidative pentose phosphate (PP) pathways, malic enzyme, and serine and C1 metabolism, suggesting NADPH requirements in response to environmental stimuli. These reactions could play an important role in optimization strategies for metabolic engineering in L. lactis. Overall, the integration of systematic analysis of amino acids and flux ratio analysis provides a systems-level understanding of how L. lactis regulates central metabolism under various conditions.
机译:乳酸乳球菌亚种。 cremoris MG1363是乳制品发酵的重要发酵剂。在工业发酵过程中,乳酸乳球菌不断受到影响细菌生长和性能的压力。尽管已经描述了乳酸乳球菌对几种压力的反应,但是很少描述体内通量水平的适应机制。为了深入了解细胞代谢,使用了13C代谢通量分析和气相色谱质谱(GC-MS)来测量在三种温度(30度)变化条件下乳酸乳球菌中央代谢中活性途径的通量比。 C,37摄氏度)和搅拌(在150 rpm下搅拌和不搅拌)。共同比较蛋白原氨基酸(PAA)和游离脂肪酸(FAA)的浓度,并进行Pearson相关分析(r)以测量PAA之间的成对关系。支链和芳香族氨基酸,苏氨酸,丝氨酸,赖氨酸和组氨酸之间密切相关,表明糖酵解,戊糖磷酸(PP)途径,苹果酸酶和丙酮酸羧化酶(pycA)催化的抗血管反应的通量调节变化。通量比分析表明,尽管条件不同,葡萄糖主要通过糖酵解转化,从而突出了乳酸乳球菌中央碳代谢的稳定性。在所有条件下,丙酮酸(PYR)反应通过草酰乙酸(OAA)的较高通量比表明乳酸乳杆菌中的丙酮酸羧酸盐(pycA)的活化是对指数期酸胁迫的响应。随后,通过氧化和非氧化戊糖磷酸(PP)途径,苹果酸酶以及丝氨酸和C1代谢观察到更显着的通量比差异,表明NADPH需要响应环境刺激。这些反应可能在乳酸乳球菌的代谢工程优化策略中起重要作用。总体而言,对氨基酸的系统分析和通量比分析的集成,提供了乳酸菌在各种条件下如何调节中枢代谢的系统级理解。

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