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Energy Coupling in the Transport of β-Galactosides by Escherichia Coli: Effect of Proton Conductors

机译:大肠杆菌在β-半乳糖苷转运中的能量耦合:质子导体的影响

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摘要

Escherichia coli accumulates thiomethyl-β-d-galactoside against a concentration gradient under anaerobic conditions. The accumulation was abolished by carbonylcyanide m-chlorophenylhydrazone, tetrachlorosalicylanilide, 2,4 dinitrophenol, and other uncouplers of oxidative phosphorylation even though oxidative phosphorylation would not be expected to occur anaerobically. In the presence of the uncouplers, the β-galactoside carrier remained functional and catalyzed equilibration of thiomethylgalactoside across the membrane. The uncouplers did not inhibit the generation of adenosine triphosphate or protein turnover, or the accumulation of α-methylglucoside and glycerol by phosphorylation. We conclude that, at least anaerobically, uncouplers of oxidative phosphorylation do not interfere with energy metabolism in general, but prevent the utilization of metabolic energy for the active transport of galactosides. The uncouplers also facilitate passage of protons across the membrane. Various hypotheses are considered to explain why a proton-impermeable membrane may be required for active transport of galactosides and other substrates.
机译:大肠杆菌在厌氧条件下会针对浓度梯度积聚硫甲基-β-d-半乳糖苷。即使预计不会厌氧发生氧化磷酸化,羰基氰化物间氯苯基m,四氯水杨酰苯胺,2,4-二硝基苯酚和其他氧化磷酸化解偶联剂也消除了这种积累。在存在解偶联剂的情况下,β-半乳糖苷载体保持功能性,并催化整个膜上的硫代甲基半乳糖苷平衡。解偶联剂不抑制磷酸化腺苷三磷酸的产生或蛋白质的更新,或α-甲基葡糖苷和甘油的积累。我们得出的结论是,至少在厌氧状态下,氧化磷酸化的解偶联剂一般不会干扰能量代谢,但会阻止代谢能量用于半乳糖苷的主动转运。解偶联剂还促进质子穿过膜的通过。考虑各种假设来解释为什么半乳糖苷和其他底物的主动转运可能需要质子不可渗透的膜。

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