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Mitochondrial Function/Dysfunction in Health and Disease: Similar mitochondrial activation kinetics in wild-type and creatine kinase-deficient fast-twitch muscle indicate significant Pi control of respiration

机译:线粒体功能/功能障碍在健康和疾病中的作用:野生型和肌酸激酶缺乏的快速抽搐肌肉中的线粒体激活动力学相似表明对呼吸的显着Pi控制

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摘要

Past simulations of oxidative ATP metabolism in skeletal muscle have predicted that elimination of the creatine kinase (CK) reaction should result in dramatically faster oxygen consumption dynamics during transitions in ATP turnover rate. This hypothesis was investigated. Oxygen consumption of fast-twitch (FT) muscle isolated from wild-type (WT) and transgenic mice deficient in the myoplasmic (M) and mitochondrial (Mi) CK isoforms (MiM CK−/−) were measured at 20°C at rest and during electrical stimulation. MiM CK−/− muscle oxygen consumption activation kinetics during a step change in contraction rate were 30% faster than WT (time constant 53 ± 3 vs. 69 ± 4 s, respectively; mean ± SE, n = 8 and 6, respectively). MiM CK−/− muscle oxygen consumption deactivation kinetics were 380% faster than WT (time constant 74 ± 4 s vs. 264 ± 4 s, respectively). Next, the experiments were simulated using a computational model of the oxidative ATP metabolic network in FT muscle featuring ADP and Pi feedback control of mitochondrial respiration (J. A. L. Jeneson, J. P. Schmitz, N. A. van den Broek, N. A. van Riel, P. A. Hilbers, K. Nicolay, J. J. Prompers. Am J Physiol Endocrinol Metab 297: E774–E784, 2009) that was reparameterized for 20°C. Elimination of Pi control via clamping of the mitochondrial Pi concentration at 10 mM reproduced past simulation results of dramatically faster kinetics in CK−/− muscle, while inclusion of Pi control qualitatively explained the experimental observations. On this basis, it was concluded that previous studies of the CK-deficient FT muscle phenotype underestimated the contribution of Pi to mitochondrial respiratory control.
机译:过去骨骼肌中氧化性ATP代谢的模拟已预测,消除肌酸激酶(CK)反应应会在ATP周转率过渡期间显着加快耗氧动态。研究了这一假设。从缺乏肌浆(M)和线粒体(Mi)CK亚型(MiM CK -/-)的野生型(WT)和转基因小鼠中分离出的快速抽搐(FT)肌肉的耗氧量在静止和电刺激下于20°C下测得。 MiM CK -/-在收缩率阶跃变化期间的肌肉耗氧激活动力学比WT快30%(时间常数分别为53±3 vs. 69±4 s;平均值±SE,n = 8和6)。 MiM CK -/-肌肉耗氧失活动力学比WT快380%(时间常数分别为74±4 s和264±4 s)。接下来,使用具有线粒体呼吸作用的ADP和Pi反馈控制的FT肌肉中氧化ATP代谢网络的计算模型来模拟实验(JAL Jeneson,JP Schmitz,NA van den Broek,NA van Riel,PA Hilbers,K。Nicolay ,JJ Prompers。Am J Physiol Endocrinol Metab 297:E774-E784,2009),将其重新设定为20°C。通过限制线粒体Pi浓度为10 mM来消除Pi控制,重现了以往模拟结果,即CK -/-肌肉中动力学显着加快,而Pi控制的定性解释了实验观察。在此基础上,得出的结论是,先前对CK缺失的FT肌肉表型的研究低估了Pi对线粒体呼吸控制的贡献。

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