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Heart, Lung and Circulation
Volume 16, Issue 5
, Pages 349-355
, October 2007
Store-Operated Ca2+ Entry and TRPC Expression; Possible Roles in Cardiac Pacemaker Tissue
Reference
- . Cardiac pacemaking in the sinoatrial node. Physiol Rev. 1993;73:197–227
- . Pacemaker mechanisms in cardiac tissue. Ann Rev Physiol. 1993;55:455–472
- . Ionic current mechanisms generating vertebrate primary cardiac pacemaker activity at the single cell level: an integrative view. Ann Rev Physiol. 1992;54:279–302
- . Mechanisms of automaticity in subsidiary pacemakers from cat right atrium. Circ Res. 1989;64:648–657
- . Electrophysiological actions of ryanodine on single rabbit sinoatrial nodal cells. Gen Pharmacol. 1997;28(1):31–38
- . Intracellular calcium and Na+–Ca2+ exchange current in isolated toad pacemaker cells. J Physiol. 1998;508:153–166
- . Na+–Ca2+ exchange current in latent pacemaker cells isolated from cat right atrium. J Physiol. 1993;466:263–285
- . Sinoatrial nodal cell ryanodine receptor and Na+–Ca2+ exchanger: molecular partners in pacemaker regulation. Circ Res. 2001;88(12):1254–1258
- . Sarcoplasmic reticulum Ca2+ release is not a dominating factor in sinoatrial node pacemaker activity. Circ Res. 2003;92(3):e41–e44
- . Does Ca2+ release from the sarcoplasmic reticulum influence heart rate?. Clin Exp Pharmacol Physiol. 2001;28(8):703–708
- . Calcium and cardiac rhythms: physiological and pathophysiological. Circ Res. 2002;90(1):14–17
- . Rhythmic Ca2+ oscillations drive sinoatrial nodal cell pacemaker function to make the heart tick. Ann N Y Acad Sci. 2005;1047:138–156
- . A model for receptor-regulated calcium entry. Cell Calcium. 1986;7(1):1–12
- . Store depletion and calcium influx. Physiol Rev. 1997;77(4):901–930
- . Biphasic modulation of potassium release in rat parotid gland by carbachol and phenylephrine. J Pharmacol Exp Ther. 1976;198(2):375–384
- . A novel receptor-operated Ca2+-permeable channel activated by ATP in smooth muscle. Nature. 1987;328(6127):275–278
- . Depletion of intracellular calcium stores activates a calcium current in mast cells. Nature. 1992;355(6358):353–356
- . Mitogen-regulated Ca2+ current of T lymphocytes is activated by depletion of intracellular Ca2+ stores. Proc Natl Acad Sci U S A. 1993;90(13):6295–6299
- . Identification of the coupling between skeletal muscle store-operated Ca2+ entry and the inositol trisphosphate receptor. Proc Natl Acad Sci U S A. 2003;100(5):2941–2944
- . Activation of calcium oscillations by thapsigargin in parotid acinar cells. J Biol Chem. 1991;266(5):2778–2782
- . Regulation of calcium influx by second messengers in rat mast cells. Nature. 1988;334(6182):499–504
- . SK&F 96365, a novel inhibitor of receptor-mediated calcium entry. Biochem J. 1990;271(2):515–522
- . Potentiation and inhibition of Ca(2+) release-activated Ca(2+) channels by 2-aminoethyldiphenyl borate (2-APB) occurs independently of IP(3) receptors. J Physiol. 2001;536(Pt 1):3–19
- . Pharmacological profile of store-operated channels in cerebral arteriolar smooth muscle cells. Brit J Pharmacol. 2003;139(5):955–965
- . Non-specific effects of calcium entry antagonists in mast cells. Pflugers Arch. 1994;428(5–6):433–438
- . Emerging perspectives in store-operated Ca(2+) entry: Roles of Orai, Stim and TRP. Biochim Biophys Acta. 2006;
- . Excitation-contraction coupling and cardiac contractile force. 2nd ed.. Dordrecht: Kluwer Academic; 2001;
- . Intracellular Ca transients in rat cardiac myocytes: role of Na–Ca exchange in excitation–contraction coupling. Am J Physiol. 1990;258(5 Pt. 1):C944–C954
- . Inositol trisphosphate does not release Ca2+ from permeabilized cardiac myocytes and sarcoplasmic reticulum. FEBS Lett. 1985;185(2):328–332
- . Calcium release from cardiac sarcoplasmic reticulum induced by photorelease of calcium or Ins(1,4,5)P3. Am J Physiol. 1990;258(2 Pt. 2):H610–H615
- . Requirement of the inositol trisphosphate receptor for activation of store-operated Ca2+ channels. Science. 2000;287(5458):1647–1651
- . Depletion of Ca2+ in the sarcoplasmic reticulum stimulates Ca2+ entry into mouse skeletal muscle fibres. J Physiol. 2001;533(Pt 1):185–199
- . Skeletal muscle hypertrophy is mediated by a Ca2+-dependent calcineurin signalling pathway. Nature. 1999;400(6744):576–581
- . Differential activation of transcription factors induced by Ca2+ response amplitude and duration. Nature. 1997;386(6627):855–858
- . Remodeling muscles with calcineurin. Bioessays. 2000;22(6):510–519
- . IGF-1 enhances a store-operated Ca2+ channel in skeletal muscle myoblasts: involvement of a CD20-like protein. J Cell Physiol. 2003;197(1):53–60
- . The role of sarcoplasmic reticulum in relaxation of mouse muscle; effects of 2,5-di(tert-butyl)-1,4-benzohydroquinone. J Physiol. 1994;474:291–301
- . How does β-adrenergic stimulation increase heart rate? The role of intracellular Ca2+ release in amphibian pacemaker cells. J Physiol. 1999;516:793–804
- . ATP modulates intracellular Ca2+ and firing rate through a P2Y1 purinoceptor in cane toad pacemaker cells. J Physiol. 2003;552:777–787
- . Activation of recombinant trp by thapsigargin in Sf9 insect cells. Am J Physiol. 1994;267(5 Pt 1):C1501–C1505
- . Coassembly of TRP and TRPL produces a distinct store-operated conductance. Cell. 1997;89(7):1155–1164
- . New light on TRP and TRPL. Mol Pharmacol. 1997;52(5):755–763
- . Store-operated cation channels in the heart and cells of the cardiovascular system. Cell Physiol Biochem. 1999;9(4–5):270–283
- . TRPC1, a human homolog of a Drosophila store-operated channel. Proc Natl Acad Sci U S A. 1995;92(21):9652–9656
- . A mammalian capacitative calcium entry channel homologous to Drosophila TRP and TRPL. EMBO J. 1996;15(22):6166–6171
- . Differential expression of mammalian TRP homologues across tissues and cell lines. Biochem Biophys Res Commun. 1997;239(1):279–283
- . TRPC3 channels co-localize with the Na+, Ca2+ exchanger and the Na+ pump in the axial component of the transverse-axial-tubular system (TATS) of rat ventricle. Am J Physiol Heart Circ Physiol. 2006;
- . Rapid shuttling of NF-AT in discrimination of Ca2+ signals and immunosuppression. Nature. 1996;383(6603):837–840
- . Calcineurin-dependent cardiomyopathy is activated by TRPC in the adult mouse heart. FASEB J. 2006;20(10):1660–1670
- . Modeling of membrane excitability in gonadotropin-releasing hormone-secreting hypothalamic neurons regulated by Ca2+-mobilizing and adenylyl cyclase-coupled receptors. J Neurosci. 2000;20(24):9290–9297
- . TRPC4 currents have properties similar to the pacemaker current in interstitial cells of Cajal. Am J Physiol Cell Physiol. 2002;283(6):C1637–C1645
- . Initiation of embryonic cardiac pacemaker activity by inositol 1,4,5-trisphosphate-dependent calcium signalling. Molec Biol Cell. 2005;16(5):2414–2423
- . Store-operated Ca2+ entry modulates sarcoplasmic reticulum Ca2+ loading in neonatal rabbit cardiac ventricular myocytes. Am J Physiol Cell Physiol. 2006;290(6):C1572–C1582
- . Ca(2+) signaling by TRPC3 involves Na(+) entry and local coupling to the Na(+)/Ca(2+) exchanger. J Biol Chem. 2004;279(14):13696–13704
- . The influence of venous filling upon the rate of the heart. J Physiol. 1915;50:65–84
- . Selected contribution: axial stretch increases spontaneous pacemaker activity in rabbit isolated sinoatrial node cells. J Appl Physiol. 2000;89(5):2099–2104
- . Gadolinium decreases stretch-induced vulnerability to atrial fibrillation. Circulation. 2000;101(18):2200–2205
- . Tarantula peptide inhibits atrial fibrillation. Nature. 2001;409(6816):35–36
- . TRPC1 forms the stretch-activated cation channel in vertebrate cells. Nat Cell Biol. 2005;7(2):179–185
- . Store-operated Ca2+ influx and expression of TRPC genes in mouse sinoatrial node. Cir Res. 2007;100(11):1605–1614
PII: S1443-9506(07)00846-3
doi: 10.1016/j.hlc.2007.07.004
© 2007 Australasian Society of Cardiac and Thoracic Surgeons and the Cardiac Society of Australia and New Zealand. Published by Elsevier Inc. All rights reserved.
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Heart, Lung and Circulation
Volume 16, Issue 5
, Pages 349-355
, October 2007
