Abstract

The elemental composition of rat cardiac muscle was determined with electron probe x-ray microanalysis (EPMA) of rapidly frozen papillary muscles and trabeculae incubated with ryanodine (1 μM) in either 1.2 or 10 mM [Ca 2+] o-containing solutions, paced at 0.6 Hz or tetanized at 10 Hz. Total mitochondrial calcium increased significantly, by 4.2 mmol/kg dry weight during a 7 s tetanus, only in muscles tetanized in the presence of 10 mM [Ca 2+] o when cytoplasmic Ca 2+ is 1–4 μM (Backx, P. H., W.-D. Gao, M. D. Azan-Backx, and E. Marban. 1995. The relationship between contractile force and intracellular [Ca 2+] in intact rat trabeculae. J. Gen. Physiol. 105:1–19). Comparison of total mitochondrial with free mitochondrial Ca 2+ reported in the literature indicates that the total/free ratio is ∼6000 at physiological or near-physiological levels of total mitochondrial calcium. Increases in free mitochondrial [Ca 2+] consistent with regulation of mitochondrial enzymes should be associated with increases in total mitochondrial calcium detectable with EPMA. However, such increases in mitochondrial calcium occur only as the result of prolonged, unphysiological elevations of cytosolic [Ca 2+].

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