Albillos A, Neher E, Moser T. (2000). R-Type Ca2+ channels are coupled to the rapid component of secretion in mouse adrenal slice chromaffin cells. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]
Babcock DF, Herrington J, Goodwin PC, Park YB, Hille B. (1997). Mitochondrial participation in the intracellular Ca2+ network. The Journal of cell biology. 136 [PubMed]
Benavides A, Calvo S, Tornero D, González-García C, Ceña V. (2004). Adrenal medulla calcium channel population is not conserved in bovine chromaffin cells in culture. Neuroscience. 128 [PubMed]
Brand MD. (1985). The stoichiometry of the exchange catalysed by the mitochondrial calcium/sodium antiporter. The Biochemical journal. 229 [PubMed]
Budd SL, Nicholls DG. (1996). A reevaluation of the role of mitochondria in neuronal Ca2+ homeostasis. Journal of neurochemistry. 66 [PubMed]
CARAFOLI E, ROSSI CS, LEHNINGER AL. (1965). UPTAKE OF ADENINE NUCLEOTIDES BY RESPIRING MITOCHONDRIA DURING ACTIVE ACCUMULATION OF CA++ AND PHOSPHATE. The Journal of biological chemistry. 240 [PubMed]
Chalmers S, Nicholls DG. (2003). The relationship between free and total calcium concentrations in the matrix of liver and brain mitochondria. The Journal of biological chemistry. 278 [PubMed]
Cox DA, Conforti L, Sperelakis N, Matlib MA. (1993). Selectivity of inhibition of Na(+)-Ca2+ exchange of heart mitochondria by benzothiazepine CGP-37157. Journal of cardiovascular pharmacology. 21 [PubMed]
David G. (1999). Mitochondrial clearance of cytosolic Ca(2+) in stimulated lizard motor nerve terminals proceeds without progressive elevation of mitochondrial matrix [Ca(2+)]. The Journal of neuroscience : the official journal of the Society for Neuroscience. 19 [PubMed]
David G, Talbot J, Barrett EF. (2003). Quantitative estimate of mitochondrial [Ca2+] in stimulated motor nerve terminals. Cell calcium. 33 [PubMed]
Du C, MacGowan GA, Farkas DL, Koretsky AP. (2001). Calibration of the calcium dissociation constant of Rhod(2)in the perfused mouse heart using manganese quenching. Cell calcium. 29 [PubMed]
Duchen MR. (1992). Ca(2+)-dependent changes in the mitochondrial energetics in single dissociated mouse sensory neurons. The Biochemical journal. 283 ( Pt 1) [PubMed]
GREENAWALT JW, ROSSI CS, LEHNINGER AL. (1964). EFFECT OF ACTIVE ACCUMULATION OF CALCIUM AND PHOSPHATE IONS ON THE STRUCTURE OF RAT LIVER MITOCHONDRIA. The Journal of cell biology. 23 [PubMed]
Herrington J, Park YB, Babcock DF, Hille B. (1996). Dominant role of mitochondria in clearance of large Ca2+ loads from rat adrenal chromaffin cells. Neuron. 16 [PubMed]
Hines ML, Carnevale NT. (1997). The NEURON simulation environment. Neural computation. 9 [PubMed]
Holz RW, Bittner MA, Peppers SC, Senter RA, Eberhard DA. (1989). MgATP-independent and MgATP-dependent exocytosis. Evidence that MgATP primes adrenal chromaffin cells to undergo exocytosis. The Journal of biological chemistry. 264 [PubMed]
Magnus G, Keizer J. (1997). Minimal model of beta-cell mitochondrial Ca2+ handling. The American journal of physiology. 273 [PubMed]
McCormack JG, Halestrap AP, Denton RM. (1990). Role of calcium ions in regulation of mammalian intramitochondrial metabolism. Physiological reviews. 70 [PubMed]
Minta A, Kao JP, Tsien RY. (1989). Fluorescent indicators for cytosolic calcium based on rhodamine and fluorescein chromophores. The Journal of biological chemistry. 264 [PubMed]
Montero M et al. (2000). Chromaffin-cell stimulation triggers fast millimolar mitochondrial Ca2+ transients that modulate secretion. Nature cell biology. 2 [PubMed]
Neher E. (1998). Vesicle pools and Ca2+ microdomains: new tools for understanding their roles in neurotransmitter release. Neuron. 20 [PubMed]
Nicholls DG, Budd SL. (2000). Mitochondria and neuronal survival. Physiological reviews. 80 [PubMed]
Panov AV, Andreeva L, Greenamyre JT. (2004). Quantitative evaluation of the effects of mitochondrial permeability transition pore modifiers on accumulation of calcium phosphate: comparison of rat liver and brain mitochondria. Archives of biochemistry and biophysics. 424 [PubMed]
Park YB, Herrington J, Babcock DF, Hille B. (1996). Ca2+ clearance mechanisms in isolated rat adrenal chromaffin cells. The Journal of physiology. 492 ( Pt 2) [PubMed]
Pitter JG, Maechler P, Wollheim CB, Spät A. (2002). Mitochondria respond to Ca2+ already in the submicromolar range: correlation with redox state. Cell calcium. 31 [PubMed]
Pivovarova NB, Hongpaisan J, Andrews SB, Friel DD. (1999). Depolarization-induced mitochondrial Ca accumulation in sympathetic neurons: spatial and temporal characteristics. The Journal of neuroscience : the official journal of the Society for Neuroscience. 19 [PubMed]
Sorimachi M, Nishimura S, Yamagami K. (1999). Sequestration of depolarization-induced Ca2+ loads by mitochondria and Ca2+ efflux via mitochondrial Na+/Ca2+ exchanger in bovine adrenal chromaffin cells. The Japanese journal of physiology. 49 [PubMed]
Tomlinson A, Durbin J, Coupland RE. (1987). A quantitative analysis of rat adrenal chromaffin tissue: morphometric analysis at tissue and cellular level correlated with catecholamine content. Neuroscience. 20 [PubMed]
Wakade AR. (1981). Studies on secretion of catecholamines evoked by acetylcholine or transmural stimulation of the rat adrenal gland. The Journal of physiology. 313 [PubMed]
Warashina A. (1999). Light-evoked recovery from wortmannin-induced inhibition of catecholamine secretion and synaptic transmission. Archives of biochemistry and biophysics. 367 [PubMed]
Warashina A. (2001). Mechanism by which wortmannin and LY294002 inhibit catecholamine secretion in the rat adrenal medullary cells. Cell calcium. 29 [PubMed]
Warashina A, Ogura T. (2004). Modeling of stimulation-secretion coupling in a chromaffin cell. Pflugers Archiv : European journal of physiology. 448 [PubMed]
Warashina A, Satoh Y. (2001). Modes of secretagogue-induced [Ca(2+)](i) responses in individual chromaffin cells of the perfused rat adrenal medulla. Cell calcium. 30 [PubMed]
Wingrove DE, Gunter TE. (1986). Kinetics of mitochondrial calcium transport. II. A kinetic description of the sodium-dependent calcium efflux mechanism of liver mitochondria and inhibition by ruthenium red and by tetraphenylphosphonium. The Journal of biological chemistry. 261 [PubMed]
Xu T, Naraghi M, Kang H, Neher E. (1997). Kinetic studies of Ca2+ binding and Ca2+ clearance in the cytosol of adrenal chromaffin cells. Biophysical journal. 73 [PubMed]