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醌的氧化还原状态影响卡氏棘阿米巴线粒体解偶联蛋白对嘌呤核苷酸的敏感性。

Redox state of quinone affects sensitivity of Acanthamoeba castellanii mitochondrial uncoupling protein to purine nucleotides.

作者信息

Swida Aleksandra, Woyda-Ploszczyca Andrzej, Jarmuszkiewicz Wieslawa

机构信息

Laboratory of Bioenergetics, Faculty of Biology, Adam Mickiewicz University, Umultowska 89, 61-614 Poznan, Poland.

出版信息

Biochem J. 2008 Jul 15;413(2):359-67. doi: 10.1042/BJ20080333.

Abstract

We studied FFA (free fatty acid)-induced uncoupling activity in Acanthamoeba castellanii mitochondria in the non-phosphorylating state. Either succinate or external NADH was used as a respiratory substrate to determine the proton conductance curves and the relationships between respiratory rate and the quinone reduction level. Our determinations of the membranous quinone reduction level in non-phosphorylating mitochondria show that activation of UCP (uncoupling protein) activity leads to a PN (purine nucleotide)-sensitive decrease in the quinone redox state. The gradual decrease in the rate of quinone-reducing pathways (using titration of dehydrogenase activities) progressively leads to a full inhibitory effect of GDP on LA (linoleic acid) induced proton conductance. This inhibition cannot be attributed to changes in the membrane potential. Indeed, the lack of GDP inhibitory effect observed when the decrease in respiratory rate is accompanied by an increase in the quinone reduction level (using titration of the quinol-oxidizing pathway) proves that the inhibition by nucleotides can be revealed only for a low quinone redox state. It must be underlined that, in A. castellanii non-phosphorylating mitochondria, the transition of the inhibitory effect of GDP on LA-induced UCP-mediated uncoupling is observed for the same range of quinone reduction levels (between 50% and 40%) as that observed previously for phosphorylating conditions. This observation, drawn from the two different metabolic states of mitochondria, indicates that quinone could affect UCP activity through sensitivity to PNs.

摘要

我们研究了在非磷酸化状态下,游离脂肪酸(FFA)诱导的卡氏棘阿米巴线粒体解偶联活性。使用琥珀酸或外部NADH作为呼吸底物来测定质子传导曲线以及呼吸速率与醌还原水平之间的关系。我们对非磷酸化线粒体中膜醌还原水平的测定表明,解偶联蛋白(UCP)活性的激活导致醌氧化还原状态对嘌呤核苷酸(PN)敏感的降低。通过滴定脱氢酶活性,醌还原途径速率的逐渐降低会逐渐导致GDP对亚油酸(LA)诱导的质子传导产生完全抑制作用。这种抑制不能归因于膜电位的变化。实际上,当呼吸速率降低伴随着醌还原水平升高(通过滴定喹啉氧化途径)时,未观察到GDP的抑制作用,这证明只有在低醌氧化还原状态下才能观察到核苷酸的抑制作用。必须强调的是,在卡氏棘阿米巴非磷酸化线粒体中,观察到GDP对LA诱导的UCP介导的解偶联的抑制作用转变时的醌还原水平范围(50%至40%),与之前在磷酸化条件下观察到的范围相同。这一从线粒体两种不同代谢状态得出的观察结果表明,醌可能通过对PNs的敏感性影响UCP活性。

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