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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Calcium-Independent Uncoupling Activity of Palmitic Acid in Liver Mitochondria Is Regulated by the Ion Fluxes Causing the Interconversion of Δψ and ΔpH across the Inner Membrane
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Calcium-Independent Uncoupling Activity of Palmitic Acid in Liver Mitochondria Is Regulated by the Ion Fluxes Causing the Interconversion of Δψ and ΔpH across the Inner Membrane

机译:钙离子在肝脏线粒体中的非依赖性钙解偶联活性受离子通量的影响,该离子通量导致整个膜内的Δψ和ΔpH相互转换。

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The effect of ion fluxes across the inner membrane on calcium-independent uncoupling activity of palmitic acid was investigated in experiments on rat liver mitochondria energized by the oxidation of succinate. The following compounds were used as the inductors of ion fluxes: the K~+/H~+ antiporter nigericin causing transformation of ΔpH into electrical potential difference (Δψ) across the inner membrane; tetraphenylphosphonium (TPP~+) that freely crosses phospholipid membranes; protonophore carbonyl cyanide 4-(trifluoromethoxy)phenylhydrazone (FCCP) that induces a flow of H~+ from the intermembrane space into the matrix and reduces Δψ and ΔpH. It was found that nigericin at a concentration of 20 nM, which causes an increase in maximal Δψ, partially inhibits the ability of palmitic acid to reduce Δψ and stimulates mitochondrial respiration. A specific inhibitor of the ATP/ADP antiporter (carboxyatractylate) and a substrate of the aspartate/glutamate antiporter (glutamate) increase Δψ and partially inhibit mitochondrial respiration in the presence of palmitic acid. Under these conditions, 10 μM cyclosporin A also inhibits respiration but has no effect on Δψ. The specific uncoupling activity of palmitic acid (V_U) and its specific components that characterize participation of the ATP/ADP antiporter (V_(Catr)), aspartate/glutamate antiporter (V_(Glu)), and cyclosporin-A-sensitive system (V_(CsA)) in the palmitic acid-induced uncoupling were estimated. It was shown that nigericin substantially reduces V_U, V_(Catr) and V_(Glu) but increases V_(CsA). TPP~+ at a concentration of 20 μM increases V_U and V_(Glu), does not affect V_(Catr) and reduces V_(CsA). FCCP at concentrations of 20 and 40 nM reduces Δψ by not more than 17% but does not affect V_U, V_(Catr), V_(Glu) and V_(CsA). The results suggest that the calcium-independent uncoupling effect of palmitic acid in liver mitochondria is caused by the return of protons to the matrix with participation of ADP/ATP and aspartate/glutamate antiporters and owing to activation of cyclosporin A-sensitive electron transport along the respiratory chain without affecting Δψ. The induced ion fluxes across the inner mitochondrial membrane can be considered as a factor of the calciumindependent regulation of uncoupling activity of palmitic acid in liver mitochondria with participation of the ADP/ATP and aspartate/glutamate antiporters and of the cyclosporin A-sensitive electron transport system.
机译:在琥珀酸氧化激发的大鼠肝线粒体实验中,研究了跨内膜离子通量对棕榈酸钙非依赖性解偶联活性的影响。以下化合物用作离子通量的感应剂:K〜+ / H〜+反向转运蛋白尼日利亚霉素,导致ΔpH转变为整个内膜的电势差(Δψ)。自由穿过磷脂膜的四苯基phosph(TPP〜+);质子载体羰基氰化物4-(三氟甲氧基)苯基hydr(FCCP)诱导H〜+从膜间空间流入基质并降低Δψ和ΔpH。已发现浓度为20 nM的尼日尔霉素引起最大Δψ的增加,部分抑制了棕榈酸降低Δψ的能力并刺激线粒体呼吸。在棕榈酸的存在下,ATP / ADP反转运蛋白(羧化白菜酸酯)的特异性抑制剂和天冬氨酸/谷氨酸反转运蛋白(谷氨酸)的底物增加Δψ并部分抑制线粒体呼吸。在这些条件下,10μM环孢菌素A也抑制呼吸作用,但对Δψ无影响。棕榈酸(V_U)及其特定成分的特​​异解偶联活性,其表征ATP / ADP反转运蛋白(V_(Catr)),天冬氨酸/谷氨酸反转运蛋白(V_(Glu))和环孢菌素A敏感系统(V_ (CsA))在棕榈酸诱导的解偶联中进行了估计。结果表明,尼日利亚霉素实质上降低了V_U,V_(Catr)和V_(Glu),但增加了V_(CsA)。浓度为20μM的TPP〜+可增加V_U和V_(Glu),不影响V_(Catr)并降低V_(CsA)。浓度为20和40 nM的FCCP将Δψ降低不超过17%,但不会影响V_U,V_(Catr),V_(Glu)和V_(CsA)。结果表明,棕榈酸在肝线粒体中的非钙依赖性解偶联作用是由于质子在ADP / ATP和天冬氨酸/谷氨酸逆转运蛋白的参与下返回质子,以及环孢菌素A敏感的电子沿着细胞的转运而引起的。呼吸链而不影响Δψ。跨线粒体内膜的诱导离子通量可以被认为是肝线粒体中棕榈酸解偶联活性的钙依赖性调节的因素,其中ADP / ATP和天冬氨酸/谷氨酸逆转运蛋白的参与以及环孢菌素A敏感的电子传输系统的参与。

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