Calcium signal transmission between ryanodine receptors and mitochondria

被引:191
作者
Szalai, G
Csordás, G
Hantash, BM
Thomas, AP
Hajnóczky, G
机构
[1] Thomas Jefferson Univ, Dept Pathol Anat & Cell Biol, Philadelphia, PA 19107 USA
[2] Univ Med & Dent New Jersey, New Jersey Med Sch, Dept Physiol & Pharmacol, Newark, NJ 07103 USA
关键词
D O I
10.1074/jbc.275.20.15305
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Control of energy metabolism by increases of mitochondrial matrix [Ca2+] ([Ca2+](m)) may represent a fundamental mechanism to meet the ATP demand imposed by heart contractions, but the machinery underlying propagation of [Ca2+] signals from ryanodine receptor Ca2+ release channels (RyR) to the mitochondria remains elusive. Using permeabilized cardiac (H9c2) cells we investigated the cytosolic [Ca2+] ([Ca2+](c)) and [Ca2+](m) signals elicited by activation of RyR, Caffeine, Ca2+, and ryanodine evoked [Ca2+](c) spikes that often appeared as frequency-modulated [Ca2+](c) oscillations in these permeabilized cells. Rapid increases in [Ca2+], and activation of the Ca2+-sensitive mitochondrial dehydrogenases were synchronized to the rising phase of the [Ca2+](c) spikes, The RyR-mediated elevations of global [Ca2+](c) were in the submicromolar range, but the rate of [Ca2+](m) increases was as large as it was in the presence of 30 mu M global [Ca2+](c). Furthermore, RyR-dependent increases of [Ca2+](m) were relatively insensitive to buffering of [Ca2+](c) by EGTA. Therefore, RyR-driven rises of [Ca2+](m) appear to result from large and rapid increases of perimitochondrial [Ca2+]. The falling phase of [Ca2+](c) spikes was followed by a rapid decay of [Ca2+](m). CGP37157 slowed down relaxation of [Ca2+](m) spikes, whereas cyclosporin A had no effect, suggesting that activation of the mitochondrial Ca2+ exchangers accounts for rapid reversal of the [Ca2+](m) response with little contribution from the permeability transition pore. Thus, rapid activation of Ca2+ uptake sites and Ca2+ exchangers evoked by RyR-mediated local [Ca2+](c) signals allow mitochondria to respond rapidly to single [Ca2+](c) spikes in cardiac cells.
引用
收藏
页码:15305 / 15313
页数:9
相关论文
共 48 条
[1]   CYCLOSPORINE INHIBITS MITOCHONDRIAL CALCIUM EFFLUX IN ISOLATED ADULT-RAT VENTRICULAR CARDIOMYOCYTES [J].
ALTSCHULD, RA ;
HOHL, CM ;
CASTILLO, LC ;
GARLEB, AA ;
STARLING, RC ;
BRIERLEY, GP .
AMERICAN JOURNAL OF PHYSIOLOGY, 1992, 262 (06) :H1699-H1704
[2]   Mitochondrial participation in the intracellular Ca2+ network [J].
Babcock, DF ;
Herrington, J ;
Goodwin, PC ;
Park, YB ;
Hille, B .
JOURNAL OF CELL BIOLOGY, 1997, 136 (04) :833-844
[3]   MITOCHONDRIAL AND SARCOLEMMAL CA2+ TRANSPORT REDUCE [CA2+](I) DURING CAFFEINE CONTRACTURES IN RABBIT CARDIAC MYOCYTES [J].
BASSANI, RA ;
BASSANI, JWM ;
BERS, DM .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 453 :591-608
[4]  
BERS DM, 1994, METHOD CELL BIOL, V40, P3
[5]  
BERS DM, 1991, EXCITATION CONTRACTI
[6]   Mitochondria exert a negative feedback on the propagation of intracellular Ca2+ waves in rat cortical astrocytes [J].
Boitier, E ;
Rea, R ;
Duchen, MR .
JOURNAL OF CELL BIOLOGY, 1999, 145 (04) :795-808
[7]   Role of mitochondria in calcium regulation of spontaneously contracting cardiac muscle cells [J].
Bowser, DN ;
Minamikawa, T ;
Nagley, P ;
Williams, DA .
BIOPHYSICAL JOURNAL, 1998, 75 (04) :2004-2014
[8]   Intracellular Ca2+ increases the mitochondrial NADH concentration during elevated work in intact cardiac muscle [J].
Brandes, R ;
Bers, DM .
CIRCULATION RESEARCH, 1997, 80 (01) :82-87
[9]  
Budd SL, 1996, J NEUROCHEM, V67, P2282
[10]   Mitochondrial free calcium transients during excitation-contraction coupling in rabbit cardiac myocytes [J].
Chacon, E ;
Ohata, H ;
Harper, IS ;
Trollinger, DR ;
Herman, B ;
Lemasters, JJ .
FEBS LETTERS, 1996, 382 (1-2) :31-36