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红色肌肉细胞中的细胞内能量单位。

Intracellular energetic units in red muscle cells.

作者信息

Saks V A, Kaambre T, Sikk P, Eimre M, Orlova E, Paju K, Piirsoo A, Appaix F, Kay L, Regitz-Zagrosek V, Fleck E, Seppet E

机构信息

Laboratory of Bioenergetics, National Institute of Chemical Physics and Biophysics, Akadeemia tee 23, 12618 Tallinn, Estonia.

出版信息

Biochem J. 2001 Jun 1;356(Pt 2):643-57. doi: 10.1042/0264-6021:3560643.

Abstract

The kinetics of regulation of mitochondrial respiration by endogenous and exogenous ADP in muscle cells in situ was studied in skinned cardiac and skeletal muscle fibres. Endogenous ADP production was initiated by addition of MgATP; under these conditions the respiration rate and ADP concentration in the medium were dependent on the calcium concentration, and 70-80% of maximal rate of respiration was achieved at ADP concentration below 20 microM in the medium. In contrast, when exogenous ADP was added, maximal respiration rate was observed only at millimolar concentrations. An exogenous ADP-consuming system consisting of pyruvate kinase (PK; 20-40 units/ml) and phosphoenolpyruvate (PEP; 5 mM), totally suppressed respiration activated by exogenous ADP, but the respiration maintained by endogenous ADP was not suppressed by more than 20-40%. Creatine (20 mM) further activated respiration in the presence of ATP and PK+PEP. Short treatment with trypsin (50-500 nM for 5 min) decreased the apparent K(m) for exogenous ADP from 300-350 microM to 50-60 microM, increased inhibition of respiration by PK+PEP system up to 70-80%, with no changes in MgATPase activity and maximal respiration rates. Electron-microscopic observations showed detachment of mitochondria and disordering of the regular structure of the sarcomere after trypsin treatment. Two-dimensional electrophoresis revealed a group of at least seven low-molecular-mass proteins in cardiac skinned fibres which were very sensitive to trypsin and not present in glycolytic fibres, which have low apparent K(m) for exogenous ADP. It is concluded that, in oxidative muscle cells, mitochondria are incorporated into functional complexes ('intracellular energetic units') with adjacent ADP-producing systems in myofibrils and in sarcoplasmic reticulum, probably due to specific interaction with cytoskeletal elements responsible for mitochondrial distribution in the cell. It is suggested that these complexes represent the basic pattern of organization of muscle-cell energy metabolism.

摘要

在皮肤化的心肌和骨骼肌纤维中,研究了原位肌肉细胞内源性和外源性ADP对线粒体呼吸的调节动力学。通过添加MgATP启动内源性ADP的产生;在这些条件下,培养基中的呼吸速率和ADP浓度取决于钙浓度,并且在培养基中ADP浓度低于20μM时达到最大呼吸速率的70 - 80%。相比之下,当添加外源性ADP时,仅在毫摩尔浓度下观察到最大呼吸速率。由丙酮酸激酶(PK;20 - 40单位/毫升)和磷酸烯醇丙酮酸(PEP;5 mM)组成的外源性ADP消耗系统完全抑制了外源性ADP激活的呼吸,但内源性ADP维持的呼吸未被抑制超过20 - 40%。肌酸(20 mM)在ATP和PK + PEP存在的情况下进一步激活呼吸。用胰蛋白酶(50 - 500 nM处理5分钟)短暂处理后,外源性ADP的表观K(m)从300 - 350μM降至50 - 60μM,PK + PEP系统对呼吸的抑制作用增加至70 - 80%,而MgATPase活性和最大呼吸速率没有变化。电子显微镜观察显示胰蛋白酶处理后线粒体脱离和肌节规则结构紊乱。二维电泳显示心脏皮肤化纤维中至少有一组七种低分子量蛋白质对胰蛋白酶非常敏感,而在对外源性ADP具有低表观K(m)的糖酵解纤维中不存在。结论是,在氧化型肌肉细胞中,线粒体与肌原纤维和肌浆网中相邻的ADP产生系统结合形成功能复合物(“细胞内能量单位”),这可能是由于与负责细胞中线粒体分布的细胞骨架成分发生特异性相互作用。有人提出这些复合物代表了肌肉细胞能量代谢组织的基本模式。

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Intracellular energetic units in red muscle cells.红色肌肉细胞中的细胞内能量单位。
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