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内源性辅酶Q的氧化还原状态调节鸟苷三磷酸对分离的骨骼肌线粒体中亚油酸诱导的解偶联的抑制作用。

Redox state of endogenous coenzyme q modulates the inhibition of linoleic acid-induced uncoupling by guanosine triphosphate in isolated skeletal muscle mitochondria.

作者信息

Jarmuszkiewicz Wieslawa, Navet Rachel, Alberici Luciane C, Douette Pierre, Sluse-Goffart Claudine M, Sluse Francis E, Vercesi Anibal E

机构信息

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

出版信息

J Bioenerg Biomembr. 2004 Oct;36(5):493-502. doi: 10.1023/B:JOBB.0000047331.25248.7a.

Abstract

The skeletal muscle mitochondria contain two isoforms of uncoupling protein, UCP2 and mainly UCP3, which had been shown to be activated by free fatty acids and inhibited by purine nucleotides in reconstituted systems. On the contrary in isolated mitochondria, the protonophoretic action of muscle UCPs had failed to be demonstrated in the absence of superoxide production. We showed here for the first time that muscle UCPs were activated in state 3 respiration by linoleic acid and dissipated energy from oxidative phosphorylation by decreasing the ADP/O ratio. The efficiency of UCPs in mitochondrial uncoupling increased when the state 3 respiratory rate decreased. The inhibition of the linoleic acid-induced uncoupling by a purine nucleotide (GTP), was not observed in state 4 respiration, in uninhibited state 3 respiration, as well as in state 3 respiration inhibited by complex III inhibitors. On the contrary, the progressive inhibition of state 3 respiration by n -butyl malonate, which inhibits the uptake of succinate, led to a full inhibitory effect of GTP. Therefore, as the inhibitory effect of GTP was observed only when the reduced state of coenzyme Q was decreased, we propose that the coenzyme Q redox state could be a metabolic sensor that modulates the purine nucleotide inhibition of FFA-activated UCPs in muscle mitochondria.

摘要

骨骼肌线粒体含有两种解偶联蛋白亚型,即UCP2和主要的UCP3,在重构系统中,它们已被证明可被游离脂肪酸激活,并被嘌呤核苷酸抑制。相反,在分离的线粒体中,在没有超氧化物产生的情况下,肌肉解偶联蛋白的质子载体作用未能得到证实。我们首次在此表明,肌肉解偶联蛋白在状态3呼吸中被亚油酸激活,并通过降低ADP/O比值从氧化磷酸化中耗散能量。当状态3呼吸速率降低时,解偶联蛋白在线粒体解偶联中的效率增加。在状态4呼吸、未受抑制的状态3呼吸以及被复合物III抑制剂抑制的状态3呼吸中,均未观察到嘌呤核苷酸(GTP)对亚油酸诱导的解偶联的抑制作用。相反,抑制琥珀酸摄取的正丁基丙二酸对状态3呼吸的逐渐抑制导致了GTP的完全抑制作用。因此,由于仅当辅酶Q的还原状态降低时才观察到GTP的抑制作用,我们提出辅酶Q的氧化还原状态可能是一种代谢传感器,可调节嘌呤核苷酸对肌肉线粒体中脂肪酸激活的解偶联蛋白的抑制作用。

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