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Effect of pH and Monensin on Glucose Transport by Fibrobacter succinogenes a Cellulolytic Ruminal Bacterium

机译:pH和莫能菌素对纤维化琥珀酸杆菌(一种纤维素分解瘤胃细菌)的葡萄糖转运的影响。

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摘要

Fibrobacter succinogenes S85, a cellulolytic ruminal bacterium, required sodium for growth and glucose uptake. Cells which were deenergized with iodoacetate (500 μM) could not take up [14C]glucose. However, deenergized cells which were treated with valinomycin, loaded with potassium, and diluted into sodium or sodium plus potassium to create an artificial electrical gradient (ΔΨ) plus a chemical gradient of sodium (ΔpNa) or ΔpNa alone transported glucose at a rapid rate. Cells which were loaded with potassium plus sodium and diluted into sodium (ΔΨ with sodium, but no ΔpNa) also took up glucose at a rapid rate. Potassium-loaded cells that were diluted into buffers which did not contain sodium (ΔΨ without sodium) could not take up glucose. An artificial ZΔpH which was created by acetate diffusion could not drive glucose transport even if sodium was present. The maximum rate and affinity of glucose transport (pH 6.7) were 62.5 nmol/mg of protein per min and 0.51 mM, respectively. S85 was unable to grow at a pH of less than 5.5, and there was little glucose transport at this pH. When the extracellular pH was decreased, the glucose carrier was inhibited, intracellular pH declined, the cells were no longer able to metabolize glucose, and ΔΨ declined. Monensin (1 μM) or lasalocid (5 μM) decreased intracellular ATP and dissipated both the ΔΨ and ΔpNa. Since there was no driving force for transport, glucose transport was inhibited. These results indicated that F. succinogenes used a pH-sensitive sodium symport mechanism to take up glucose and that either a ΔΨ or a ΔpNa was required for glucose transport.
机译:纤维状瘤胃细菌琥珀酸纤维杆菌S85需要钠才能生长和摄取葡萄糖。用碘乙酸盐(500μM)断电的细胞无法吸收[ 14 C]葡萄糖。然而,用缬氨霉素处理,加钾并稀释成钠或钠加钾以产生人工电梯度(ΔΨ)加上单独的钠(ΔpNa)或ΔpNa的化学梯度的去电细胞以快速速率运输葡萄糖。装有钾加钠并稀释成钠的细胞(Δ+有钠,但无ΔpNa)也迅速吸收了葡萄糖。稀释到不含钠(不含钠的ΔΨ)的缓冲液中的含钾细胞无法摄取葡萄糖。即使存在钠,通过乙酸盐扩散产生的人工ZΔpH也不能驱动葡萄糖转运。葡萄糖转运的最大速率和亲和力(pH 6.7)分别为每分钟62.5 nmol / mg蛋白质和0.51 mM。 S85在低于5.5的pH下无法生长,并且在此pH下几乎没有葡萄糖转运。当细胞外pH降低时,葡萄糖载体被抑制,细胞内pH降低,细胞不再能够代谢葡萄糖,并且ΔΨ降低。莫能菌素(1μM)或拉索洛西德(5μM)降低细胞内ATP并消散ΔΨ和ΔpNa。由于没有运输的驱动力,因此抑制了葡萄糖的运输。这些结果表明,琥珀酸葡萄球菌利用pH敏感的钠共价机制吸收葡萄糖,并且葡萄糖转运需要ΔΨ或ΔpNa。

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