Spindler Matthias, Niebler Reinhard, Remkes Helga, Horn Michael, Lanz Titus, Neubauer Stefan
Department of Medicine, Medical University of Würzburg, Josef-Schneider Strasse 2, 97070 Würzburg, Germany.
Am J Physiol Heart Circ Physiol. 2002 Aug;283(2):H680-7. doi: 10.1152/ajpheart.00800.2001.
The individual functional significance of the various creatine kinase (CK) isoenzymes for myocardial energy homeostasis is poorly understood. Whereas transgenic hearts lacking the M subunit of CK (M-CK) show unaltered cardiac energetics and left ventricular (LV) performance, deletion of M-CK in combination with loss of sarcomeric mitochondrial CK (ScCKmit) leads to significant alterations in myocardial high-energy phosphate metabolites. To address the question as to whether this alteration is due to a decrease in total CK activity below a critical threshold or due to the specific loss of ScCKmit, we studied isolated perfused hearts with selective loss of ScCKmit (ScCKmit(-/-), remaining total CK activity approximately 70%) using (31)P NMR spectroscopy at two different workloads. LV performance in ScCKmit(-/-) hearts (n = 11) was similar compared with wild-type hearts (n = 9). Phosphocreatine/ATP, however, was significantly reduced in ScCKmit(-/-) compared with wild-type hearts (1.02 +/- 0.05 vs. 1.54 +/- 0.07, P < 0.05). In parallel, free [ADP] was higher (144 +/- 11 vs. 67 +/- 7 microM, P < 0.01) and free energy release for ATP hydrolysis (DeltaG(ATP)) was lower (-55.8 +/- 0.5 vs. -58.5 +/- 0.5 kJ/mol, P < 0.01) in ScCKmit(-/-) compared with wild-type hearts. These results demonstrate that M- and B-CK containing isoenzymes are unable to fully substitute for the loss of ScCKmit. We conclude that ScCKmit, in contrast to M-CK, is critically necessary to maintain normal high-energy phosphate metabolite levels in the heart.
各种肌酸激酶(CK)同工酶对心肌能量稳态的个体功能意义目前了解甚少。缺乏CK的M亚基(M-CK)的转基因心脏,其心脏能量代谢和左心室(LV)功能未发生改变,而M-CK的缺失与肌节线粒体CK(ScCKmit)的缺失相结合,则会导致心肌高能磷酸代谢物发生显著改变。为了探讨这种改变是由于总CK活性降至临界阈值以下,还是由于ScCKmit的特异性缺失所致,我们使用(31)P核磁共振波谱法,在两种不同的工作负荷下,研究了选择性缺失ScCKmit(ScCKmit(-/-),剩余总CK活性约70%)的离体灌注心脏。与野生型心脏(n = 9)相比,ScCKmit(-/-)心脏(n = 11)的LV功能相似。然而,与野生型心脏相比,ScCKmit(-/-)心脏中的磷酸肌酸/ATP显著降低(1.02±0.05对1.54±0.07,P < 0.05)。同时,ScCKmit(-/-)心脏中的游离[ADP]较高(144±11对67±7 microM,P < 0.01),ATP水解的自由能释放(DeltaG(ATP))较低(-55.8±0.5对-58.5±0.5 kJ/mol,P < 0.01)。这些结果表明,含有M和B-CK的同工酶无法完全替代ScCKmit的缺失。我们得出结论,与M-CK相比,ScCKmit对于维持心脏正常的高能磷酸代谢物水平至关重要。