EFFECTS OF CARDIAC WORK ON ELECTRICAL POTENTIAL GRADIENT ACROSS MITOCHONDRIAL-MEMBRANE IN PERFUSED RAT HEARTS

被引:103
作者
WAN, B
DOUMEN, C
DUSZYNSKI, J
SALAMA, G
VARY, TC
LANOUE, KF
机构
[1] PENN STATE UNIV,MILTON S HERSHEY MED CTR,DEPT CELLULAR & MOLEC PHYSIOL,HERSHEY,PA 17033
[2] UNIV PITTSBURGH,DEPT PHYSIOL,PITTSBURGH,PA 15261
[3] NENCKI INST,DEPT CELLULAR BIOCHEM,PL-02093 WARSAW,POLAND
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1993年 / 265卷 / 02期
关键词
HEART; MITOCHONDRIA; MITOCHONDRIAL ADENOSINE 5'-TRIPHOSPHATE SYNTHASE; RESPIRATORY CONTROL;
D O I
10.1152/ajpheart.1993.265.2.H453
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The myocardium responds to alterations in cardiac work by changing its rate of O2 consumption. This reflects an increase in the oxidative synthesis of ATP to meet the contractile demand for ATP. However, the biochemical mechanisms responsible for increased ATP synthesis are not fully understood. To localize the flux-controlling reaction(s) in the pathway of ATP synthesis, the effects of substrates and cardiac work on mitochondrial membrane potential (DELTApsi(m)), total tissue NADH-to-NAD+ ratio, and high-energy phosphate metabolites were examined in perfused rat hearts. DELTApsi(m) was measured using the equilibrium distribution of tetraphenylphosphonium (33). Cytosolic phosphorylation potential, total tissue NADH-to-NAD+ ratio, and DELTApsi(m) were higher in hearts perfused with pyruvate than in those perfused with glucose. Increasing cardiac work induced a four-fold increase in O2 consumption, which was accompanied by 1) decreased or unaltered cytosolic ADP concentration, 2) increased tissue NADH-to-NAD+ ratio, and 3) decreased DELTApsi(m). The results indicate that both NADH-generating reactions and the ATP synthase-catalyzed reaction are important in causing the increase in respiration that accompanies increased work. Because the activation of ATP synthase by cardiac work occurred in the absence of increases in DELTApsi(m), ADP, and P(i), it is possible that the work-related acceleration in ATP synthesis may be due to modification of the kinetic properties of the ATP synthase.
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页码:H453 / H460
页数:8
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