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肌酸激酶平衡遵循骨骼肌中的溶液热力学。使用肌酸类似物的31P核磁共振研究。

Creatine kinase equilibration follows solution thermodynamics in skeletal muscle. 31P NMR studies using creatine analogs.

作者信息

Wiseman R W, Kushmerick M J

机构信息

Department of Radiology, University of Washington Medical Center, Seattle 98195, USA.

出版信息

J Biol Chem. 1995 May 26;270(21):12428-38. doi: 10.1074/jbc.270.21.12428.

Abstract

The hypothesis tested was whether creatine kinase (CK) equilibrates with its substrates and products in the cytosol as if in solution. We used the creatine analogs cyclocreatine (cCr) or beta-guanidopropionate (beta GPA) to test if mass action ratios (gamma) for CK in muscle could be predicted from combined equilibrium constants (Kcomb) measured in solutions mimicking the intracellular environment. Mice were fed cCr or beta GPA and their muscles assayed for substrates and products of the CK reaction by 31P NMR spectroscopy and high performance liquid chromatography. After three weeks of feeding, gamma was indistinguishable from Kcomb in cCr-treated muscles demonstrating both PCr/Cr and phospho-analog/analog must have equilibrated with a constant and uniform cellular ATP/ADP ratio. In beta GPA-treated muscles, gamma was smaller than Kcomb due to a higher content of muscle beta GPA. Feeding beta GPA for 9-12 weeks resulted in a closer agreement between Kcomb and gamma, suggesting ATP/ADP ratios are not uniform within the muscle perhaps due to transient metabolic stress in some cells. From this analysis it follows that calculation of free ADP from the CK equilibrium for a heterogeneous population of cells with respect to total Cr and ATP content is correct only if chemical potentials of these cells are uniform.

摘要

所检验的假设是肌酸激酶(CK)在胞质溶胶中是否与其底物和产物达到平衡,就如同在溶液中一样。我们使用肌酸类似物环肌酸(cCr)或β-胍基丙酸(β-GPA)来检验是否可以根据在模拟细胞内环境的溶液中测得的组合平衡常数(Kcomb)来预测肌肉中CK的质量作用比(γ)。给小鼠喂食cCr或β-GPA,然后通过31P核磁共振光谱法和高效液相色谱法测定其肌肉中CK反应的底物和产物。喂食三周后,在cCr处理的肌肉中,γ与Kcomb无法区分,这表明磷酸肌酸/肌酸(PCr/Cr)和磷酸类似物/类似物必定已与恒定且均匀的细胞ATP/ADP比率达到平衡。在β-GPA处理的肌肉中,由于肌肉中β-GPA含量较高,γ小于Kcomb。喂食β-GPA 9至12周导致Kcomb和γ之间的一致性更高,这表明肌肉内的ATP/ADP比率可能并不均匀,这可能是由于某些细胞中的短暂代谢应激所致。由此分析可知,对于总肌酸(Cr)和ATP含量不同的细胞群体,只有当这些细胞的化学势均匀时,根据CK平衡计算游离ADP才是正确的。

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