大肠杆菌FocA/ b依赖性H+和K+通量:外源与内源甲酸的影响

IF 2.7 Q3 BIOPHYSICS
Biophysical reports Pub Date : 2025-09-10 Epub Date: 2025-08-08 DOI:10.1016/j.bpr.2025.100225
L Grigoryan, A Babayan, A Vassilian, A Poladyan, G Sawers, K Trchounian
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引用次数: 0

摘要

在发酵过程中,大肠杆菌通过FocA/FocB甲酸通道在细胞质膜上双向转运甲酸/甲酸。根据pH值和甲酸是外源供应还是内部产生,转运机制不同。目前的研究阐明了这些通道在pH为7.5的混合碳发酵培养的固定相细胞中依赖于FOF1 atp酶活性的作用。在用葡萄糖加甘油培养的细胞中,外源添加甲酸增加了单或双foc突变体中dccd敏感(FOF1 atp酶依赖)的质子通量。此外,外源供应的甲酸也增加了dccd敏感的钾通量,但仅在缺乏focB的突变体中。在葡萄糖、甘油和甲酸盐中生长的细胞中,与仅在葡萄糖和甘油混合物中生长的细胞相比,在全细胞实验中添加甲酸盐可使FOF1 atp酶活性提高约60%。在葡萄糖、甘油和甲酸上培养到固定期的focA突变体中,与仅在葡萄糖和甘油上培养的细胞相比,FOF1 atp酶活性增加了一倍,而在甲酸试验中,focA- focb双零突变体的FOF1 atp酶活性降低了约50%。这些数据表明,细胞调节甲酸转运的机制取决于甲酸是内部产生还是外源添加。因此,fof1 - atp酶活性和FocA/FocB通道以及甲酸氢解酶活性结合起来,在固定相细胞发酵过程中平衡pH和离子梯度,以响应甲酸是代谢产生还是高浓度从环境中供应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Escherichia coli FocA/B-dependent H+ and K+ fluxes: Influence of exogenous versus endogenous formate.

Escherichia coli translocates formate/formic acid bidirectionally across the cytoplasmic membrane by the FocA/FocB formate channels during fermentation. Depending on the pH and whether formate is supplied exogenously or generated internally, the mechanisms of translocation differ. This study elucidates the role of these channels in dependence on FOF1 ATPase activity in stationary phase cells after cultivation by mixed-carbon fermentation at pH 7.5. In cells cultivated with glucose plus glycerol, exogenously added formate increased the N,N'-dicyclohexylcarbodiimide (DCCD)-sensitive (FOF1 ATPase-dependent) proton flux in single or double foc mutants. Moreover, exogenously supplied formate also increased the DCCD-sensitive potassium flux, but only in mutants where focB was absent. In the cells grown on glucose, glycerol, and formate, addition of formate in the whole-cell assays increased FOF1 ATPase activity by ∼60% compared with cells grown on a mixture of only glucose and glycerol. In a focA mutant cultivated to the stationary phase on glucose, glycerol, and formate, FOF1 ATPase activity was double that compared with cells grown on only glucose and glycerol, while in a focA-focB double-null mutant FOF1 ATPase activity decreased by ∼50% in formate assays. These data suggest that the cell regulates the mechanism of formate translocation depending on whether formate is generated internally or added exogenously. Thus, FOF1-ATPase activity and the FocA/FocB channels together with formate hydrogenlyase activity combine to balance pH and ion gradients during fermentation in stationary phase cells in response to whether formate is generated metabolically or supplied in high concentration from the environment.

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Biophysical reports
Biophysical reports Biophysics
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