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解偶联蛋白和ATP合酶对卡氏棘阿米巴线粒体状态3呼吸的贡献。

The contribution of uncoupling protein and ATP synthase to state 3 respiration in Acanthamoeba castellanii mitochondria.

作者信息

Jarmuszkiewicz Wiesława, Czarna Małgorzata, Sluse-Goffart Claudine, Sluse Francis E

机构信息

Laboratory of Bioenergetics, Adam Mickiewicz University, Poznań, Poland.

出版信息

Acta Biochim Pol. 2004;51(2):533-8.

Abstract

Mitochondria of the amoeba Acanthamoeba castellanii possess a free fatty acid-activated uncoupling protein (AcUCP) that mediates proton re-uptake driven by the mitochondrial proton electrochemical gradient. We show that AcUCP activity diverts energy from ATP synthesis during state 3 mitochondrial respiration in a fatty acid-dependent way. The efficiency of AcUCP in mitochondrial uncoupling increases when the state 3 respiratory rate decreases as the AcUCP contribution is constant at a given linoleic acid concentration while the ATP synthase contribution decreases with respiratory rate. Respiration sustained by this energy-dissipating process remains constant at a given linoleic acid concentration until more than 60% inhibition of state 3 respiration by n-butyl malonate is achieved. The present study supports the validity of the ADP/O method to determine the actual contributions of AcUCP (activated with various linoleic acid concentrations) and ATP synthase in state 3 respiration of A.castellanii mitochondria fully depleted of free fatty acid-activated and describes how the two contributions vary when the rate of succinate dehydrogenase is decreased by succinate uptake limitation.

摘要

棘阿米巴原虫的线粒体拥有一种游离脂肪酸激活的解偶联蛋白(AcUCP),该蛋白介导由线粒体质子电化学梯度驱动的质子再摄取。我们发现,在状态3线粒体呼吸过程中,AcUCP活性以脂肪酸依赖的方式使能量从ATP合成中转移。当状态3呼吸速率降低时,AcUCP在线粒体解偶联中的效率会增加,因为在给定的亚油酸浓度下,AcUCP的贡献是恒定的,而ATP合酶的贡献会随着呼吸速率而降低。在给定的亚油酸浓度下,由这种能量耗散过程维持的呼吸保持恒定,直到正丁基丙二酸对状态3呼吸的抑制超过60%。本研究支持了ADP/O方法在确定完全耗尽游离脂肪酸激活的棘阿米巴线粒体状态3呼吸中AcUCP(用不同亚油酸浓度激活)和ATP合酶的实际贡献方面的有效性,并描述了当琥珀酸脱氢酶的速率因琥珀酸摄取限制而降低时,这两种贡献是如何变化的。

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