首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Control of skeletal muscle mitochondria respiration by adenine nucleotides:differential effect of ADP and ATP according to muscle contractile type in pigs
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Control of skeletal muscle mitochondria respiration by adenine nucleotides:differential effect of ADP and ATP according to muscle contractile type in pigs

机译:腺嘌呤核苷酸控制骨骼肌线粒体呼吸的作用:根据猪肌肉收缩类型的不同,ADP和ATP的差异

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Skeletal muscle exhibits considerable variation in mitochondrial content among fiber types,but it is less clear whether mitochondria from different fiber types also present specific functional and regulatory properties.The present experiment was undertaken on ten 170-day-old pigs to compare functional properties and control of respiration by adenine nucleotides in mitochondria isolated from predominantly slow-twitch(Rhomboideus(RM))and fast-twitch(Longissimus(LM))muscles.Mitochondrial ATP synthesis,respiratory control ratio(RCR)and ADP-stimulated respiration with either complex I or II substrates were significantly higher(25-30%,P<0.05)in RM than in LM mitochondria,whereas no difference was observed for basal respiration.Based on mitochondrial enzyme activities(cytochrome c oxidase[COX],F0Fl-ATPase,mitochondrial creatine kinase[mi-CK]),the higher ADP-stimulated respiration rate of RM mitochondria appeared mainly related to a higher maximal oxidative capacity,without any difference in the maximal phosphorylation potential.Mitochondrial K_m for ADP was similar in RM(4.4(+-)0.9 uM)and LM(5.9(+-)1.2 uM)muscles(P>0.05)but the inhibitory effect of ATP was more marked in LM(P<0.01).These findings demonstrate that the regulation of mitochondrial respiration by ATP differs according to muscle contractile type and that absolute muscle oxidative capacity not only relies on mitochondrial density but also on mitochondrial functioning per se.
机译:骨骼肌在不同纤维类型中的线粒体含量差异很大,但尚不清楚来自不同纤维类型的线粒体是否也具有特定的功能和调节特性。本实验是在十只170日龄的猪上进行的,以比较其功能特性和控制慢肌(Rhomboideus(RM))和快肌(Longissimus(LM))肌肉中线粒体中腺嘌呤核苷酸的呼吸作用RM的LM或II底物显着高于LM的线粒体(25-30%,P <0.05),而基础呼吸没有差异。基于线粒体酶活性(细胞色素C氧化酶[COX],F0Fl-ATPase,线粒体)肌酸激酶[mi-CK]),RM线粒体的较高ADP刺激呼吸速率似乎主要与较高的最大氧化能力有关,t值无差异在RM(4.4(+-)0.9 uM)和LM(5.9(+-)1.2 uM)肌肉中,线粒体K_m对ADP的作用相似(P> 0.05),但ATP的抑制作用在LM中更明显(P <0.01)。这些发现表明ATP对线粒体呼吸的调节因肌肉收缩类型而异,并且绝对的肌肉氧化能力不仅取决于线粒体密度,还取决于线粒体本身的功能。

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