Reversal of mitochondrial Na Ca exchange during metabolic inhibition in rat cardiomyocytes

Authors
Citation
Ej. Griffiths, Reversal of mitochondrial Na Ca exchange during metabolic inhibition in rat cardiomyocytes, FEBS LETTER, 453(3), 1999, pp. 400-404
Citations number
31
Categorie Soggetti
Biochemistry & Biophysics
Journal title
FEBS LETTERS
ISSN journal
00145793 → ACNP
Volume
453
Issue
3
Year of publication
1999
Pages
400 - 404
Database
ISI
SICI code
0014-5793(19990625)453:3<400:ROMNCE>2.0.ZU;2-B
Abstract
During hypoxia of isolated cardiomyocytes, Ca2+ entry into mitochondria may occur via the Na/Ca exchanger, the normal efflux pathway, and not the Ca-u niporter, the normal influx route. If this is the case, then depletion of m yocyte Na+ should inhibit Ca2+ uptake, and collapse of the mitochondrial me mbrane potential (Delta psi(m)) would inhibit the uniporter, To test these hypotheses, isolated rat myocytes were exposed to metabolic inhibition, to mimic hypoxia, and [Ca2+](m) and [Ca2+](e) determined by selective loading of indo-1 into these compartments. Delta psi(m) was determined using rhodam ine 123, Following metabolic inhibition, [Ca2+](m) was significantly lower in Na-depleted cells than controls (P<0.001), [Ca2+](c) was approximately t he same in both groups, and mitochondria depolarised completely. Thus Na-de pletion inhibited mitochondrial Ca2+ uptake, suggesting that Ca2+ entry occ urred via Na/Ca exchange, and the collapse of Delta psi(m) during metabolic inhibition is consistent with inactivity of the Ca-uniporter. (C) 1999 Fed eration of European Biochemical Societies.