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The rates of both forward and reverse electron transfer in phosphorylating submitochondrial particles from bovine heart can be controlled by the thermodynamic phosphorylation potential (deltaGp) of the adenine nucleotide system. deltaGp is the Gibbs free energy of ATP synthesis and is defined by the relationship deltaGp = -deltaG'o + RTln([ATP]/[ADP][Pi]) where deltaG'o is the standard free energy of ATP hydrolysis. Studies of the effects of deltaGp on NADH respiration and the reduction of NAD+ by succinate show that increasing values of deltaGp cause an inhibition of forward electron transfer and a stimulation of reverse electron transfer. Between deltaGp values of 7.6 and 13.0 kcal/mol the rate of NADH respiration decreased 3-fold and the rate of NAD+ reduction by succinate increased 3-fold. Indirect phosphorylation potential titration experiments as well as direct chemical measurements indicate that steady state levels of ATP, ADP, and Pi are established during NADH respiration which correspond to a deltaGp equal to 10.7 to 11.4 kcal/mol.  相似文献   

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The effect of three uncouplers of oxidative phosphorylation, trifluoromethoxycarbon-ylcyanidephenylhydrazone (FCCP), 3,3′,4′,5-tetrachlorosalicylanilide (TCSA), and pentachlorophenol (PCP), on transport of glycine and proline by Bacillus subtilis were examined. FCCP inhibited proline uptake uncompetitively, but glycine uptake competitively. TCSA inhibited proline uptake noncompetitively, but glycine uptake competitively. PCP inhibited proline uptake noncompetitively, but glycine uptake uncompetitively. The results indicate that these uncouplers inhibit amino acid transport by interacting at specific sites rather than by reducing any central supply of energy used to fuel metabolic processes.  相似文献   

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Lee TT 《Plant physiology》1967,42(5):691-696
Ozone was found to inhibit oxidative phosphorylation and oxygen uptake in mitochondria of tobacco leaves (Nicotiana tabacum, L. var. White Gold). The inhibition appeared to occur at both substrate and electron-transport chain levels. The inhibition increased with the length of exposure to ozone, however, the phosphorylative system was more sensitive to ozone than the respiratory system. With mitochondria from detached leaves after being treated with ozone at 1 ppm for 1 hour, uncoupling of phosphorylation was demonstrated without any detectable change in the rate of respiration in the early stage of ozone effect. Inhibition of phosphorylation by ozone was also demonstrated in isolated mitochondria without apparent change in optical density of the mitochondrial suspension at 520 mμ. Therefore, mitochondrial swelling appears not to be a necessary first step for ozone-induced uncoupling of phosphorylation. The evidence suggests that inhibition of oxidative phosphorylation in mitochondria may be a primary effect of ozone in tobacco leaves.

Sucrose and glucose, when fed to the detached tobacco leaves before ozone treatment, tended to raise the phosphorylative activity of mitochondria. Mannitol and lactose were less effective.

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Summary Carbonyl cyanide m-chlorophenylhydrazone (CCCP) and pentachlorophenol (PCP), two powerful uncouplers of phosphorylation, specifically inhibit the assimilation of nitrite in the course of nitrate reduction. These results support our former conclusion that high-energy phosphate is involved in the metabolism of nitrite.  相似文献   

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Complexes between uncouplers of oxidative phosphorylation   总被引:1,自引:0,他引:1  
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Summary We have examined the effects of two weak acid uncouplers of oxidative phosphorylation, 2,4-dinitrophenol and 5,6-dichloro-2-trifluoromethyl-benzimidazole, on the electrical properties of phospholipid bilayer membranes. All the effects they produce are consistent with the charged permeant species being a HA 2 complex formed between the neutral acid HA and its anion A and the current in the aqueous phases being carried by buffered hydrogen ions. When both uncouplers are present simultaneously, all the evidence we have obtained is consistent with the charged permeant species being a HAB complex formed between the neutral acid HA of one uncoupler and the anion B of the other. It was necessary, however, to take into account interfacial processes and the unstirred layers adjacent to the membrane, the adsorption of anions to the bilayer and the buffer level in the aqueous phases to explain the results in terms of this model. The degree to which these factors will complicate a comparison of results obtained on artificial systems and mitochondria is also discussed.  相似文献   

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In a phosphate medium at pH 6.6 low concentrations of uncouplers such as p-trifluoromethoxyphenylhydrazone carbonylcyanide and 2,4-dinitrophenol inhibit the oxidation of beta-hydroxybutyrate and succinate, when added during Ca++-accumulation. The inhibition depends on the amount of accumulated Ca++, and is released by N,N,N',N'-tetramethyl-p-phenylendiamine plus ascorbate as substrate. Under identical conditions the uncouplers have no inhibitory effect when added to mitochondria during state 3 respiration or during accumulation of Sr++. Inhibition of respiration by the decrease of transmembranal succinate transport or by accumulation of oxaloacetate can be excluded. It is suggested that accumulation of Ca++ in the presence of phosphate induces structural alteration of the mitochondrial membrane, which on the one hand changes the accessibility or sensitivity of dehydrogenases to uncouplers and causes leakage of accumulated Ca++ on the other.  相似文献   

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