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乳球菌酸胁迫的代谢和转录分析,重点关注乳酸库的动力学。

Metabolic and transcriptional analysis of acid stress in Lactococcus lactis, with a focus on the kinetics of lactic acid pools.

机构信息

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Oeiras, Portugal.

出版信息

PLoS One. 2013 Jul 3;8(7):e68470. doi: 10.1371/journal.pone.0068470. Print 2013.

Abstract

The effect of pH on the glucose metabolism of non-growing cells of L. lactis MG1363 was studied by in vivo NMR in the range 4.8 to 6.5. Immediate pH effects on glucose transporters and/or enzyme activities were distinguished from transcriptional/translational effects by using cells grown at the optimal pH of 6.5 or pre-adjusted to low pH by growth at 5.1. In cells grown at pH 5.1, glucose metabolism proceeds at a rate 35% higher than in non-adjusted cells at the same pH. Besides the upregulation of stress-related genes (such as dnaK and groEL), cells adjusted to low pH overexpressed H(+)-ATPase subunits as well as glycolytic genes. At sub-optimal pHs, the total intracellular pool of lactic acid reached approximately 500 mM in cells grown at optimal pH and about 700 mM in cells grown at pH 5.1. These high levels, together with good pH homeostasis (internal pH always above 6), imply intracellular accumulation of the ionized form of lactic acid (lactate anion), and the concomitant export of the equivalent protons. The average number, n, of protons exported with each lactate anion was determined directly from the kinetics of accumulation of intra- and extracellular lactic acid as monitored online by (13)C-NMR. In cells non-adjusted to low pH, n varies between 2 and 1 during glucose consumption, suggesting an inhibitory effect of intracellular lactate on proton export. We confirmed that extracellular lactate did not affect the lactate: proton stoichiometry. In adjusted cells, n was lower and varied less, indicating a different mix of lactic acid exporters less affected by the high level of intracellular lactate. A qualitative model for pH effects and acid stress adaptation is proposed on the basis of these results.

摘要

采用体内 NMR 技术研究了 pH 值在 4.8 到 6.5 范围内对非生长状态下的乳链球菌 MG1363 细胞葡萄糖代谢的影响。通过使用在最佳 pH 值 6.5 下生长或通过在 5.1 下生长预先调整至低 pH 值的细胞,将对葡萄糖转运蛋白和/或酶活性的即时 pH 值效应与转录/翻译效应区分开来。在 pH 值为 5.1 下生长的细胞中,葡萄糖代谢的速率比在相同 pH 值下未经调整的细胞高 35%。除了上调应激相关基因(如 dnaK 和 groEL)外,调整至低 pH 值的细胞还过度表达了 H(+) -ATPase 亚基和糖酵解基因。在亚最佳 pH 值下,在最佳 pH 值下生长的细胞中细胞内总乳酸池达到约 500mM,在 pH 值为 5.1 下生长的细胞中达到约 700mM。这些高水平,加上良好的 pH 值稳态(内部 pH 值始终高于 6),意味着细胞内积累了离子形式的乳酸(乳酸阴离子),并伴随着等量质子的输出。通过在线(13)C-NMR 监测细胞内外乳酸积累的动力学,直接确定与每个乳酸阴离子一起输出的质子的平均数量 n。在未经低 pH 值调整的细胞中,n 在葡萄糖消耗过程中在 2 到 1 之间变化,表明细胞内乳酸对质子输出有抑制作用。我们证实了细胞外乳酸不会影响乳酸:质子化学计量比。在调整后的细胞中,n 较低且变化较小,表明存在一种不同的乳酸外排混合物,受细胞内高浓度乳酸的影响较小。基于这些结果,提出了一种 pH 值效应和酸应激适应的定性模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a146/3700934/c47e72ac0b68/pone.0068470.g001.jpg

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