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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >The Features of Activation of Free Oxidation by α,ω-Tetradecanedioic Acid in Liver Mitochondria
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The Features of Activation of Free Oxidation by α,ω-Tetradecanedioic Acid in Liver Mitochondria

机译:α,ω-十四碳二酸在肝线粒体中激活自由氧化的特征

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It was found that α,ω-tetradecanedioic acid (TDA) at the concentration of 0-500 μM doubles the rate of nonphosphorylating respiration (free oxidation) of liver mitochondria in a dose-dependent manner. This effect of TDA is observed in the presence of the excess of EGTA, which eliminates the induction of the Ca2+-dependent nonspecific permeability of the mitochondrial inner membrane (pore opening). An unusu-ally high concentration of cyclosporin A (10 mM) completely eliminates this effect when added to the mito-chondria before or after TDA. The stimulatory effect of TDA is not accompanied by inhibition of oxidative ATP synthesis and decrease in the ADP/O ratio, in contrast to the effects of other activators of free oxidation, such as protonophore uncoupler carbonyl cyanide 4-(trifluoromethoxy)phenylhydrazone and palmitic acid. It was shown that neither oligomycin, an inhibitor of H~+-ATP synthase, nor ADP, ATP and P_i affected the activity of TDA. This is seen as an evidence that the effect of TDA is not associated with the influence on H~+-ATP synthase and it differs from the action of membranotropic uncouplers. In the presence of the lipophilic cation tetraphenylphosphonium (TPP~+) cyclosporin A does not affect the TDA-stimulated respiration of mitochondria, but carboxyatractylate and glutamate added after TDA do inhibit the respiration. In addition, under these conditions TDA decreases the rate of oxidative ATP synthesis and reduces the ADP/O ratio. It is assumed that the mechanism of the TDA-induced activation of free oxidation in liver mitochondria in the absence of TPP~+ is similar to that of the so-called decouplers and is associated with the switching of the res-piratory chain complexes to the idle mode (inner uncoupling).
机译:发现浓度为0-500μM的α,ω-十四烷二酸(TDA)使肝线粒体的非磷酸化呼吸(自由氧化)速率增加了一倍,且呈剂量依赖性。在过量的EGTA存在下观察到TDA的这种作用,这消除了线粒体内膜的Ca2 +依赖性非特异性渗透性的诱导(开孔)。在TDA之前或之后将异常高浓度的环孢菌素A(10 mM)完全消除了这种作用。与其他自由氧化活化剂(如质子载体解偶联剂羰基氰化物4-(三氟甲氧基)苯基hydr和棕榈酸)的作用相反,TDA的刺激作用不伴有氧化ATP合成的抑制和ADP / O比的降低。 。结果表明,H〜+ -ATP合酶的抑制剂寡霉素,ADP,ATP和P_i均不影响TDA的活性。这被视为TDA的作用与对H〜+ -ATP合酶的影响无关的证据,并且它不同于促膜解偶联剂的作用。在亲脂性阳离子四苯基phenyl(TPP〜+)的存在下,环孢菌素A不会影响TDA刺激的线粒体呼吸,但是在TDA之后添加的羧白蛋白和谷氨酸确实会抑制呼吸。另外,在这些条件下,TDA降低了氧化ATP的合成速率并降低了ADP / O比。假定在没有TPP〜+的情况下,TDA诱导的肝线粒体中游离氧化的激活机制与所谓的解偶联剂相似,并且与呼吸链复合物转变为TPP〜+有关。空闲模式(内部解耦)。

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