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鱼藤酮和哒螨灵对复合物 I 电子转移及线粒体一氧化氮合酶功能活性的影响。

Effects of rotenone and pyridaben on complex I electron transfer and on mitochondrial nitric oxide synthase functional activity.

机构信息

Department of Biochemistry and Molecular Biology, School of Medicine, University of Cádiz, Plaza Fragela 9, 11003 Cádiz, Spain.

出版信息

J Bioenerg Biomembr. 2010 Oct;42(5):405-12. doi: 10.1007/s10863-010-9309-4. Epub 2010 Oct 1.

Abstract

Rotenone and pyridaben were tested on activities and properties of rat brain mitochondria determining Ki (inhibitor concentration at half maximal inhibition) and Imax (% of inhibition at maximal inhibitor concentration). The assayed activities were complexes I, II and IV, respiration in states 3, 3u (uncoupled) and 4, biochemical and functional activities of mitochondrial nitric oxide synthase (mtNOS), and inner membrane potential. Selective inhibitions of complex I activity, mitochondrial respiration and membrane potential with malate-glutamate as substrate were observed, with a Ki of 0.28-0.36 nmol inhibitor/mg of mitochondrial protein. Functional mtNOS activity was half-inhibited at 0.70-0.74 nmol inhibitor/mg protein in state 3 mitochondria and at 2.52-2.98 nmol inhibitor/mg protein in state 3u mitochondria. This fact is interpreted as an indication of mtNOS being structurally adjacent to complex I with an intermolecular mtNOS-complex I hydrophobic bonding that is stronger at high Δψ and weaker at low Δψ.

摘要

鱼藤酮和哒螨灵对大鼠脑线粒体活性和特性的影响进行了测试,确定 Ki(半最大抑制时的抑制剂浓度)和 Imax(最大抑制剂浓度时的抑制百分比)。测定的活性包括复合物 I、II 和 IV、状态 3、3u(解偶联)和 4 的呼吸、线粒体一氧化氮合酶(mtNOS)的生化和功能活性以及内膜电位。以苹果酸-谷氨酸为底物观察到对复合物 I 活性、线粒体呼吸和膜电位的选择性抑制,Ki 值为 0.28-0.36 nmol 抑制剂/mg 线粒体蛋白。在状态 3 线粒体中,功能性 mtNOS 活性在 0.70-0.74 nmol 抑制剂/mg 蛋白时被半抑制,在状态 3u 线粒体中在 2.52-2.98 nmol 抑制剂/mg 蛋白时被半抑制。这一事实被解释为 mtNOS 与复合物 I 结构相邻的迹象,两者之间存在分子间 mtNOS-复合物 I 疏水性结合,在高Δψ 时更强,在低Δψ 时更弱。

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