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肌肉细胞中酶-底物分隔、功能偶联和代谢通道的定量研究。

Quantitative studies of enzyme-substrate compartmentation, functional coupling and metabolic channelling in muscle cells.

作者信息

Saks V, Dos Santos P, Gellerich F N, Diolez P

机构信息

Laboratories of Bioenergetics, Joseph Fourier University, Grenoble, France.

出版信息

Mol Cell Biochem. 1998 Jul;184(1-2):291-307.

PMID:9746326
Abstract

Some historical aspects of development of the concepts of functional coupling, metabolic channelling, compartmentation and energy transfer networks are reviewed. Different quantitative approaches, including kinetic and mathematical modeling of energy metabolism, intracellular energy transfer and metabolic regulation of energy production and fluxes in the cells in vivo are analyzed. As an example of the system with metabolic channelling, thermodynamic aspects of the functioning the mitochondrial creatine kinase functionally coupled to the oxidative phosphorylation are considered. The internal thermodynamics of the mitochondrial creatine kinase reaction is similar to that for other isoenzymes of creatine kinase, and the oxidative phosphorylation process specifically influences steps of association and dissociation of MgATP with the enzyme due to channelling of ATP from adenine nucleotide translocase. A new paradigm of muscle bioenergetics-the paradigm of energy transfer and feedback signaling networks based on analysis of compartmentation phenomena and structural and functional interactions in the cell is described. Analysis of the results of mathematical modeling of the compartmentalized energy transfer leads to conclusion that both calcium and ADP, which concentration changes synchronously in contraction cycle, may simultaneously activate oxidative phosphorylation in the muscle cells in vivo. The importance of the phosphocreatine circuit among other pathways of intracellular energy transfer network is discussed on the basis of the recent data published in the literature, with some experimental demonstration. The results of studies of perfused rat hearts with completely inhibited creatine kinase show significantly decreased work capacity and respectively, energy fluxes, in these hearts in spite of significant activation of adenylate kinase system (Dzeja et al. this volume). These results, combined with those of mathematical analysis of the energy metabolism of hearts of transgenic mice with switched off creatine kinase isoenzymes confirm the importance of phosphocreatine pathway for energy transfer for cell function and energetics in mature heart and many other types of cells, as one of major parts of intracellular energy transfer network and metabolic regulation.

摘要

本文回顾了功能偶联、代谢通道、区室化和能量传递网络概念发展的一些历史方面。分析了不同的定量方法,包括能量代谢的动力学和数学建模、细胞内能量传递以及体内细胞中能量产生和通量的代谢调节。作为具有代谢通道系统的一个例子,考虑了与氧化磷酸化功能偶联的线粒体肌酸激酶功能的热力学方面。线粒体肌酸激酶反应的内部热力学与肌酸激酶的其他同工酶相似,并且由于腺嘌呤核苷酸转位酶的ATP通道作用,氧化磷酸化过程特异性地影响MgATP与该酶的缔合和解离步骤。描述了肌肉生物能学的一个新范式——基于对细胞中区室化现象以及结构和功能相互作用的分析的能量传递和反馈信号网络范式。对区室化能量传递的数学建模结果分析得出结论,钙和ADP在收缩周期中浓度同步变化,它们可能同时激活体内肌肉细胞中的氧化磷酸化。基于文献中最近发表的数据并结合一些实验证明,讨论了磷酸肌酸回路在细胞内能量传递网络的其他途径中的重要性。对肌酸激酶完全抑制的灌注大鼠心脏的研究结果表明,尽管腺苷酸激酶系统显著激活,但这些心脏的工作能力和能量通量分别显著降低(Dzeja等人,本卷)。这些结果与对肌酸激酶同工酶关闭的转基因小鼠心脏能量代谢的数学分析结果相结合,证实了磷酸肌酸途径在成熟心脏和许多其他类型细胞中对细胞功能和能量学的能量传递的重要性,作为细胞内能量传递网络和代谢调节的主要部分之一。

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