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May 4, 1998Circulation Research183 citationsOpen Access

Impaired Cardiac Energetics in Mice Lacking Muscle-Specific Isoenzymes of Creatine Kinase

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KSKurt W. SaupeMSMatthias SpindlerRTRong Tian

Structured PICO

P
Population
Isolated perfused hearts from wild-type mice, mice lacking the M isoform of creatine kinase (MCK-/-), and mice lacking both M and mitochondrial isoforms (M/MtCK-/-)
I
Intervention
Genetic deletion of creatine kinase isoforms (MCK-/- and M/MtCK-/-)
C
Comparator
Wild-type mice
O
Outcome
Isovolumic contractile performance and cardiac energetics (measured by 31P-nuclear magnetic resonance spectroscopy) at baseline, during increased cardiac work, and during recoverysurrogate

Severe reduction in creatine kinase activity in the heart makes increased cardiac work more energetically costly, leading to ADP accumulation and decreased free energy from ATP hydrolysis.

Abstract

Our purpose was to determine whether hearts from mice bioengineered to lack either the M isoform of creatine kinase (MCK-/- mice) or both the M and mitochondrial isoforms (M/MtCK-/- mice) have deficits in cardiac contractile function and energetics, which have previously been reported in skeletal muscle from these mice. The phenotype of hearts with deleted creatine kinase (CK) genes is of clinical interest, since heart failure is associated with decreased total CK activity and changes in the relative amounts of the CK isoforms in the heart. We measured isovolumic contractile performance in isolated perfused hearts from wild-type, MCK-/-, and M/MtCK-/- mice simultaneously with cardiac energetics (31P-nuclear magnetic resonance spectroscopy) at baseline, during increased cardiac work, and during recovery. Hearts from wild-type, MCK-/-, and M/MtCK-/- mice had comparable baseline function and responded to 10 minutes of increased heart rate and perfusate Ca2+ with similar increases in rate-pressure product (48+/-5%, 42+/-6%, and 51+/-6%, respectively). Despite a similar contractile response, M/MtCK-/- hearts increased ADP by 95%, whereas wild-type and MCK-/- hearts maintained ADP at baseline levels. The free energy released from ATP hydrolysis decreased by 3.6 kJ/mol in M/MtCK-/- hearts during increased cardiac work but only slightly in wild-type (1.7 kJ/mol) and MCK-/- (1.5 kJ/mol) hearts. In contrast to what has been reported in skeletal muscle, M/MtCK-/- hearts were able to hydrolyze and resynthesize phosphocreatine. Taken together, our results demonstrate that when CK activity is lowered below a certain level, increases in cardiac work become more "energetically costly" in terms of high-energy phosphate use, accumulation of ADP, and decreases in free energy released from ATP hydrolysis, but not in terms of myocardial oxygen consumption.

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Cite This Study

Saupe et al. (1998) studied this question.

synapsesocial.com/papers/6a7a0f428d250a4360f3ddd7https://doi.org/10.1161/01.res.82.8.898
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