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Inhibition of Membrane Transport in Streptococcus faecalis by Uncouplers of Oxidative Phosphorylation and Its Relationship to Proton Conduction

机译:氧化磷酸化解偶联剂对粪链球菌膜运输的抑制及其与质子传导的关系

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We studied the effect of compounds that uncouple oxidative phosphorylation on membrane function in Streptoccocus faecalis, an organism which relies upon glycolysis for the generation of metabolic energy. At low concentrations (ranging from 10?7 to 10?4m), tetrachlorosalicylanilide, tetramethyldipicrylamine, carbonylcyanide m-chlorophenylhydrazone, pentachlorophenol, and dicoumarol strongly inhibited energy-dependent transport of rubidium, phosphate, and certain amino acids. However, these compounds had little effect on the generation of adenosine triphosphate via glycolysis or on its utilization for the synthesis of macromolecules. They also did not seriously inhibit uptake of those monosaccharides and amino acids which do not require concurrent metabolism. It is proposed that the uncouplers interfere with the utilization of metabolic energy for membrane transport. The uncouplers accelerated the translocation of protons across the cytoplasmic membrane. It appears that a proton-impermeable membrane is required for transport, perhaps, because a proton gradient is involved in the coupling of metabolic energy to the translocation of substrates across the membrane.
机译:我们研究了解链氧化磷酸化的化合物对粪链球菌(Stremoccocus faecalis)膜功能的影响,粪链球菌是一种依靠糖酵解产生代谢能的生物。在低浓度下(从10 ?7 到10 ?4 m),四氯水杨基苯胺,四甲基二吡啶甲基胺,羰基氰化物 m -氯苯基hydr,五氯苯酚和二香豆酚强烈抑制energy,磷酸盐和某些氨基酸的能量依赖性运输。但是,这些化合物对通过糖酵解产生三磷酸腺苷或其用于大分子合成的利用几乎没有影响。它们也没有严重抑制不需要同时代谢的那些单糖和氨基酸的摄取。提出了解偶联剂干扰了用于膜运输的代谢能的利用。解偶联剂加速了质子穿过细胞质膜的转运。似乎需要质子不可渗透的膜来运输,这可能是因为质子梯度参与了代谢能与底物在膜上的转移之间的耦合。

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