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棕色脂肪组织线粒体:由底物水平磷酸化和线粒体外腺苷磷酸引起的解偶联作用。

Brown adipose tissue mitochondria: recoupling caused by substrate level phosphorylation and extramitochondrial adenosine phosphates.

作者信息

Rafael J, Wrabetz E

出版信息

Eur J Biochem. 1976 Jan 15;61(2):551-61. doi: 10.1111/j.1432-1033.1976.tb10050.x.

Abstract
  1. Uncoupled oxidative phosphorylation in isolated guinea pig brown-adipose-tissue mitochondria is reflected by a low phosphorylation state of adenosine phosphates in the mitochondrial matrix and in the extramitochondrial space during oxidation of succinate or glycerol 1-phosphate in the presence of serum albumin and 100 muM ADP. Recoupling of respiration and phosphorylation in the mitochondria is indicatdd by a dramatic increase in the phosphorylation state of adenine nucleotides in both compartments, when substrates inducing substrate level phosphorylation are respired. In this case ATP/ADP ratios in the extramitochondrial compartment are 10-15 times higher than in the mitochondrial matrix. 2. Recoupling mediated by substrate level phosphorylation depends on the presence of extramitochondrial adenosine phosphate and on intact adenine nucleotide translocation. In the presence of substrate level phosphorylation the amount of extramitochondrial ADP required to restore energy coupling can be extremely low (20 muM ADP or 10 nmol ADP/mg mitochondrial protein respectively). If substrate level phosphorylation is prevented by rotenone or in the presence of atractyloside, 20-50 times higher amounts of extramitochondrial adenine nucleotides are necessary to cause coupled oxidative phosphorylation. The recoupling effect of ATP is significantly stronger than that of ADP. 3. GDP (100 muM) causes a rapid increase of the ATP/ADP ratio in both compartments which is independent of substrate level phosphorylation as well as of the extramitochondrial adenosine phosphate concentration and the adenine nucleotide carrier. 4. The amount of extramitochondrial adenosine phosphate in guinea pig brown-adipose-tissue (18 nmol/mg mitochondrial protein or 2.5 mM respectively) would suffice for recoupling of oxidative phosphorylation mediated by substrate level phosphorylation under conditions in vitro; this suggests that substrate level phosphorylation is of essential importance in brown fat in vivo with respect to energy conditions in the tissue during different states of thermogenesis.
摘要
  1. 在血清白蛋白和100 μM ADP存在的情况下,当琥珀酸或磷酸甘油在豚鼠棕色脂肪组织线粒体中氧化时,线粒体基质和线粒体外空间中腺苷磷酸的低磷酸化状态反映了分离的豚鼠棕色脂肪组织线粒体中解偶联的氧化磷酸化。当呼吸诱导底物水平磷酸化的底物时,两个区室中腺嘌呤核苷酸磷酸化状态的急剧增加表明线粒体中呼吸与磷酸化的重新偶联。在这种情况下,线粒体外区室中的ATP/ADP比率比线粒体基质中的高10 - 15倍。2. 由底物水平磷酸化介导的重新偶联取决于线粒体外腺苷磷酸的存在以及完整的腺嘌呤核苷酸转运。在底物水平磷酸化存在的情况下,恢复能量偶联所需的线粒体外ADP量可能极低(分别为20 μM ADP或10 nmol ADP/mg线粒体蛋白)。如果用鱼藤酮或在苍术苷存在下阻止底物水平磷酸化,则需要高20 - 50倍的线粒体外腺嘌呤核苷酸量才能引起偶联的氧化磷酸化。ATP的重新偶联作用明显强于ADP。3. GDP(100 μM)导致两个区室中的ATP/ADP比率迅速增加,这与底物水平磷酸化以及线粒体外腺苷磷酸浓度和腺嘌呤核苷酸载体无关。4. 豚鼠棕色脂肪组织中线粒体外腺苷磷酸的量(分别为18 nmol/mg线粒体蛋白或2.5 mM)足以在体外条件下实现由底物水平磷酸化介导的氧化磷酸化的重新偶联;这表明底物水平磷酸化在体内棕色脂肪中对于不同产热状态下组织中的能量状况至关重要。

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