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Regulation of the Ca-independent phospholipase A2 in liver mitochondria by changes in the energetic state

机译:通过改变能量状态来调节肝线粒体中Ca非依赖性磷脂酶A2的表达

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摘要

The effect of electron transport chain redox status on activity of the mitochondrial Ca2+-independent phospholipase A2 (iPLA2) has been examined. When oxidizing NAD-linked substrates, the enzyme is not active unless deenergization occurs. Uncoupler, rotenone, antimycin A, and cyanide are equally effective at upregulating the enzyme, while oligomycin is ineffective. Thenoyltrifluoroacetone causes deenergization and activates the enzyme, but only if succinate is the respiratory substrate. These findings show that the mitochondrial iPLA2 responds to the energetic state overall, rather than to the redox status of individual electron transport chain complexes. With NAD-linked substrates, and using rotenone to deenergize, iPLA2 activation can be reversed by adding succinate to reestablish a membrane potential. For this purpose, ascorbate plus N,N,N′N′-tetramethyl-phenylenediamine can be used instead of succinate and is equally effective. With succinate as substrate, the membrane potential can be reduced in a graded and stable fashion by adding increasing concentrations of malonate, which is a competitive inhibitor of succinate utilization. A partial and stable activation of the iPLA2 accompanies partial deenergization. These findings suggest that in addition to the several functions that have been proposed, the mitochondrial iPLA2 may help to coordinate local capillary blood flow with changing energy demands.
机译:研究了电子传输链氧化还原状态对线粒体Ca 2 + 非依赖性磷脂酶A2(iPLA2)活性的影响。当氧化NAD连接的底物时,除非去能发生,否则该酶是无活性的。解偶联剂,鱼藤酮,抗霉素A和氰化物在上调酶方面同样有效,而寡霉素则无效。壬酰基三氟丙酮引起去能并激活酶,但前提是琥珀酸盐是呼吸底物。这些发现表明,线粒体iPLA2总体上对能量状态有反应,而不是对单个电子传输链复合物的氧化还原状态有反应。使用NAD连接的底物,并使用鱼藤酮进行脱能,可以通过添加琥珀酸酯以重新建立膜电位来逆转iPLA2激活。为此,可以使用抗坏血酸加N,N,N'N'-四甲基-苯二胺代替琥珀酸酯,并且同样有效。以琥珀酸酯为底物,可以通过增加浓度的丙二酸酯浓度来逐步且稳定地降低膜电位,丙二酸酯是琥珀酸酯的竞争性抑制剂。 iPLA2的部分和稳定激活伴随着部分断能。这些发现表明,除了已经提出的几种功能之外,线粒体iPLA2可能有助于协调局部毛细血管血流与不断变化的能量需求。

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