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线粒体对二磷酸腺苷(ADP)敏感性的程度及调控

Magnitude and control of mitochondrial sensitivity to ADP.

作者信息

Jeneson Jeroen A L, Schmitz Joep P J, van den Broek Nicole M A, van Riel Natal A W, Hilbers Peter A J, Nicolay Klaas, Prompers Jeanine J

机构信息

Biomedical NMR, Dept. of Biomedical Engineering, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.

出版信息

Am J Physiol Endocrinol Metab. 2009 Sep;297(3):E774-84. doi: 10.1152/ajpendo.00370.2009. Epub 2009 Jul 21.

Abstract

The transduction function for ADP stimulation of mitochondrial ATP synthesis in skeletal muscle was reconstructed in vivo and in silico to investigate the magnitude and origin of mitochondrial sensitivity to cytoplasmic ADP concentration changes. Dynamic in vivo measurements of human leg muscle phosphocreatine (PCr) content during metabolic recovery from contractions were performed by (31)P-NMR spectroscopy. The cytoplasmic ADP concentration ([ADP]) and rate of oxidative ATP synthesis (Jp) at each time point were calculated from creatine kinase equilibrium and the derivative of a monoexponential fit to the PCr recovery data, respectively. Reconstructed [ADP]-Jp relations for individual muscles containing more than 100 data points were kinetically characterized by nonlinear curve fitting yielding an apparent kinetic order and ADP affinity of 1.9 +/- 0.2 and 0.022 +/- 0.003 mM, respectively (means +/- SD; n = 6). Next, in silico [ADP]-Jp relations for skeletal muscle were generated using a computational model of muscle oxidative ATP metabolism whereby model parameters corresponding to mitochondrial enzymes were randomly changed by 50-150% to determine control of mitochondrial ADP sensitivity. The multiparametric sensitivity analysis showed that mitochondrial ADP ultrasensitivity is an emergent property of the integrated mitochondrial enzyme network controlled primarily by kinetic properties of the adenine nucleotide translocator.

摘要

为了研究线粒体对细胞质ADP浓度变化的敏感性程度及来源,在体内和计算机模拟中重建了骨骼肌中ADP刺激线粒体ATP合成的转导功能。通过(31)P-NMR光谱对人体腿部肌肉在收缩代谢恢复过程中的磷酸肌酸(PCr)含量进行动态体内测量。根据肌酸激酶平衡和对PCr恢复数据的单指数拟合导数,分别计算每个时间点的细胞质ADP浓度([ADP])和氧化ATP合成速率(Jp)。通过非线性曲线拟合对包含100多个数据点的单个肌肉的重建[ADP]-Jp关系进行动力学表征,得出表观动力学级数和ADP亲和力分别为1.9±0.2和0.022±0.003 mM(平均值±标准差;n = 6)。接下来,使用肌肉氧化ATP代谢的计算模型生成骨骼肌的计算机模拟[ADP]-Jp关系,通过将与线粒体酶对应的模型参数随机改变50%-150%来确定线粒体ADP敏感性的控制因素。多参数敏感性分析表明,线粒体ADP超敏感性是由腺嘌呤核苷酸转位酶的动力学特性主要控制的整合线粒体酶网络的一种涌现特性。

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Magnitude and control of mitochondrial sensitivity to ADP.线粒体对二磷酸腺苷(ADP)敏感性的程度及调控
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