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Generation of a proton motive force by the anaerobic oxalate-degrading bacterium Oxalobacter formigenes.

机译:厌氧草酸降解细菌草酸拟杆菌产生质子动力。

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摘要

The generation of transmembrane ion gradients by Oxalobacter formigenes cells metabolizing oxalate was studied. The magnitudes of both the transmembrane electrical potential (delta psi) and the pH gradient (internal alkaline) decreased with increasing external pH; quantitatively, the delta psi was the most important component of the proton motive force. As the extracellular pH of metabolizing cells was increased, intracellular pH increased and remained alkaline relative to the external pH, indicating that O. formigenes possesses a limited capacity to regulate internal pH. The generation of a delta psi by concentrated suspensions of O. formigenes cells was inhibited by the K+ ionophore valinomycin and the protonophore carbonyl cyanide-m-chlorophenylhydrazone, but not by the Na+ ionophore monensin. The H+ ATPase inhibitor N,N'-dicyclohexyl-carbodiimide inhibited oxalate catabolism but did not dissipate the delta psi. The results support the concept that energy from oxalate metabolism by O. formigenes is conserved not as a sodium ion gradient but rather, at least partially, as a transmembrane hydrogen ion gradient produced during the electrogenic exchange of substrate (oxalate) and product (formate) and from internal proton consumption during oxalate decarboxylation.
机译:研究了草酸富氧草酸杆菌细胞代谢草酸的跨膜离子梯度的产生。跨膜电位(δpsi)和pH梯度(内部碱性)的幅度都随着外部pH的增加而降低;从数量上讲,Δpsi是质子动力的最重要组成部分。随着代谢细胞的细胞外pH值的增加,细胞内pH值增加并且相对于外部pH值保持碱性,这表明O. formigenes调节内部pH值的能力有限。浓缩的O. formigenes细胞悬浮液产生的Δpsi被K +离子载体缬氨霉素和质子体羰基氰化物-间-氯苯基hydr抑制,但不受Na +离子载体莫能菌素抑制。 H + ATPase抑制剂N,N'-二环己基-碳二亚胺可抑制草酸盐分解代谢,但不会消除psi差。结果支持这样一个概念,即由产气酶产生的草酸盐代谢产生的能量不保存为钠离子梯度,而是至少部分保存为在底物(草酸盐)和产物(甲酸酯)的电化交换过程中产生的跨膜氢离子梯度。以及草酸盐脱羧过程中内部质子的消耗。

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