Note to users. If you're seeing this message, it means that your browser cannot find this page's style/presentation instructions -- or possibly that you are using a browser that does not support current Web standards. Find out more about why this message is appearing, and what you can do to make your experience of our site the best it can be.


Science 26 October 1990:
Vol. 250. no. 4980, pp. 562 - 565
DOI: 10.1126/science.1700476

Articles

Science, Vol 250, Issue 4980, 562-565
Copyright © 1990 by American Association for the Advancement of Science


articles

Molecular cloning and functional expression of the cardiac sarcolemmal Na(+)-Ca2+ exchanger

DA Nicoll, S Longoni, and KD Philipson

Department of Medicine, UCLA School of Medicine 90024-1760.

The Na(+)-Ca2+ exchanger of the cardiac sarcolemma can rapidly transport Ca2+ during excitation-contraction coupling. To begin molecular studies of this transporter, polyclonal antibodies were used to identify a complementary DNA (cDNA) clone encoding the Na(+)-Ca2+ exchanger protein. The cDNA hybridizes with a 7-kilobase RNA on a Northern blot and has an open reading frame of 970 amino acids. Hydropathy analysis suggests that the protein has multiple transmembrane helices, and a small region of the sequence is similar to that of the Na(+)- and K(+)-dependent adenosine triphosphatase. Polyclonal antibodies to a synthetic peptide from the deduced amino acid sequence react with sarcolemmal proteins of 70, 120, and 160 kilodaltons on immunoblots. RNA, synthesized from the cDNA clone, induces expression of Na(+)-Ca2+ exchange activity when injected into Xenopus oocytes.


THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
NCX1 Expression and Functional Activity Increase in Microglia Invading the Infarct Core.
F. Boscia, R. Gala, A. Pannaccione, A. Secondo, A. Scorziello, G. Di Renzo, and L. Annunziato (2009)
Stroke 40, 3608-3617
   Abstract »    Full Text »    PDF »
Cardiac autonomic neural remodeling and susceptibility to sudden cardiac death: effect of endurance exercise training.
G. E. Billman (2009)
Am J Physiol Heart Circ Physiol 297, H1171-H1193
   Abstract »    Full Text »    PDF »
K+-dependent Na+/Ca2+ exchanger 3 is involved in renal active calcium transport and is differentially expressed in the mouse kidney.
G.-S. Lee, K.-C. Choi, and E.-B. Jeung (2009)
Am J Physiol Renal Physiol 297, F371-F379
   Abstract »    Full Text »    PDF »
{beta}-Adrenergic regulation of a novel isoform of NCX: sequence and expression of shark heart NCX in human kidney cells.
E. Janowski, R. Day, A. Kraev, J. C. Roder, L. Cleemann, and M. Morad (2009)
Am J Physiol Heart Circ Physiol 296, H1994-H2006
   Abstract »    Full Text »    PDF »
Anoxia-Induced NF-kB-Dependent Upregulation of NCX1 Contributes to Ca2+ Refilling Into Endoplasmic Reticulum in Cortical Neurons.
R. Sirabella, A. Secondo, A. Pannaccione, A. Scorziello, V. Valsecchi, A. Adornetto, L. Bilo, G. Di Renzo, and L. Annunziato (2009)
Stroke 40, 922-929
   Abstract »    Full Text »    PDF »
Splice Variant-Dependent Regulation of {beta}-Cell Sodium-Calcium Exchange by Acyl-Coenzyme As.
K. S. C. Hamming, M. J. Riedel, D. Soliman, L. C. Matemisz, N. J. Webster, G. J. Searle, P. E. MacDonald, and P. E. Light (2008)
Mol. Endocrinol. 22, 2293-2306
   Abstract »    Full Text »    PDF »
A Critical Role for the Potassium-Dependent Sodium-Calcium Exchanger NCKX2 in Protection against Focal Ischemic Brain Damage.
O. Cuomo, R. Gala, G. Pignataro, F. Boscia, A. Secondo, A. Scorziello, A. Pannaccione, D. Viggiano, A. Adornetto, P. Molinaro, et al. (2008)
J. Neurosci. 28, 2053-2063
   Abstract »    Full Text »    PDF »
Store-refilling involves both L-type calcium channels and reverse-mode sodium calcium exchange in airway smooth muscle.
S. Hirota and L. J. Janssen (2007)
Eur. Respir. J. 30, 269-278
   Abstract »    Full Text »    PDF »
K+-Dependent Na+/Ca2+ Exchangers: Key Contributors to Ca2+ Signaling.
F. Visser and J. Lytton (2007)
Physiology 22, 185-192
   Abstract »    Full Text »    PDF »
The effect of external sodium concentration on sodium-calcium exchange in frog olfactory receptor cells.
S. Antolin and H. R. Matthews (2007)
J. Physiol. 581, 495-503
   Abstract »    Full Text »    PDF »
Analysis of Ion Interactions with the K+ -dependent Na+/Ca+ Exchangers NCKX2, NCKX3, and NCKX4: IDENTIFICATION OF THR-551 AS A KEY RESIDUE IN DEFINING THE APPARENT K+ AFFINITY OF NCKX2.
F. Visser, V. Valsecchi, L. Annunziato, and J. Lytton (2007)
J. Biol. Chem. 282, 4453-4462
   Abstract »    Full Text »    PDF »
Targeting and Stability of Na/Ca Exchanger 1 in Cardiomyocytes Requires Direct Interaction with the Membrane Adaptor Ankyrin-B.
S. R. Cunha, N. Bhasin, and P. J. Mohler (2007)
J. Biol. Chem. 282, 4875-4883
   Abstract »    Full Text »    PDF »
Fluorescent Na+-Ca+ Exchangers: ELECTROPHYSIOLOGICAL AND OPTICAL CHARACTERIZATION.
M. Ottolia, S. John, X. Ren, and K. D. Philipson (2007)
J. Biol. Chem. 282, 3695-3701
   Abstract »    Full Text »    PDF »
Differential distribution of NCX1 contributes to spine-dendrite compartmentalization in CA1 pyramidal cells.
A. Lorincz, B. Rozsa, G. Katona, E. S. Vizi, and G. Tamas (2007)
PNAS 104, 1033-1038
   Abstract »    Full Text »    PDF »
Novel role for K+-dependent Na+/Ca2+ exchangers in regulation of cytoplasmic free Ca2+ and contractility in arterial smooth muscle.
H. Dong, Y. Jiang, C. R. Triggle, X. Li, and J. Lytton (2006)
Am J Physiol Heart Circ Physiol 291, H1226-H1235
   Abstract »    Full Text »    PDF »
Helix Packing of the Cardiac Na+-Ca2+ Exchanger: PROXIMITY OF TRANSMEMBRANE SEGMENTS 1, 2, AND 6.
X. Ren, D. A. Nicoll, and K. D. Philipson (2006)
J. Biol. Chem. 281, 22808-22814
   Abstract »    Full Text »    PDF »
Functional alterations after cardiac sodium-calcium exchanger overexpression in heart failure.
G. Munch, K. Rosport, C. Baumgartner, Z. Li, S. Wagner, A. Bultmann, and M. Ungerer (2006)
Am J Physiol Heart Circ Physiol 291, H488-H495
   Abstract »    Full Text »    PDF »
Inhibitory Interaction of the Plasma Membrane Na+/Ca2+ Exchangers with the 14-3-3 Proteins.
M. V. Pulina, R. Rizzuto, M. Brini, and E. Carafoli (2006)
J. Biol. Chem. 281, 19645-19654
   Abstract »    Full Text »    PDF »
Sodium/Calcium Exchanger: Influence of Metabolic Regulation on Ion Carrier Interactions.
R. Dipolo and L. Beauge (2006)
Physiol Rev 86, 155-203
   Abstract »    Full Text »    PDF »
Involvement of Na+-Ca2+ Exchanger in Intracellular Ca2+ Increase and Neuronal Injury Induced by Polychlorinated Biphenyls in Human Neuroblastoma SH-SY5Y Cells.
S. Magi, P. Castaldo, G. Carrieri, A. Scorziello, G. Di Renzo, and S. Amoroso (2005)
J. Pharmacol. Exp. Ther. 315, 291-296
   Abstract »    Full Text »    PDF »
cDNA Cloning and Expression of the Cardiac Na+/Ca2+ Exchanger from Mozambique Tilapia (Oreochromis mossambicus) Reveal a Teleost Membrane Transporter with Mammalian Temperature Dependence.
C. R. Marshall, T.-C. Pan, H. D. Le, A. Omelchenko, P. P. Hwang, L. V. Hryshko, and G. F. Tibbits (2005)
J. Biol. Chem. 280, 28903-28911
   Abstract »    Full Text »    PDF »
Phylogeny of Na+/Ca2+ exchanger (NCX) genes from genomic data identifies new gene duplications and a new family member in fish species.
C. R. Marshall, J. A. Fox, S. L. Butland, B. F. F. Ouellette, F. S. L. Brinkman, and G. F. Tibbits (2005)
Physiol Genomics 21, 161-173
   Abstract »    Full Text »    PDF »
Mutational Analysis of the {alpha}-1 Repeat of the Cardiac Na+-Ca2+ Exchanger.
M. Ottolia, D. A. Nicoll, and K. D. Philipson (2005)
J. Biol. Chem. 280, 1061-1069
   Abstract »    Full Text »    PDF »
Cardiac Sodium-Calcium Exchanger Is Regulated by Allosteric Calcium and Exchanger Inhibitory Peptide at Distinct Sites.
C. Maack, A. Ganesan, A. Sidor, and B. O'Rourke (2005)
Circ. Res. 96, 91-99
   Abstract »    Full Text »    PDF »
Cross-talk between Native Plasmalemmal Na+/Ca2+ Exchanger and Inositol 1,4,5-Trisphosphate-sensitive Ca2+ Internal Store in Xenopus Oocytes.
L. M. Solis-Garrido, A. J. Pintado, E. Andres-Mateos, M. Figueroa, C. Matute, and C. Montiel (2004)
J. Biol. Chem. 279, 52414-52424
   Abstract »    Full Text »    PDF »
Susceptibilities to and Mechanisms of Excitotoxic Cell Death of Adult Mouse Inner Retinal Neurons in Dissociated Culture.
X. Luo, A. Baba, T. Matsuda, and C. Romano (2004)
Invest. Ophthalmol. Vis. Sci. 45, 4576-4582
   Abstract »    Full Text »    PDF »
Pharmacology of Brain Na+/Ca2+ Exchanger: From Molecular Biology to Therapeutic Perspectives.
L. Annunziato, G. Pignataro, and G. F. Di Renzo (2004)
Pharmacol. Rev. 56, 633-654
   Abstract »    Full Text »    PDF »
Two Sodium/Calcium Exchanger Gene Products, NCX1 and NCX3, Play a Major Role in the Development of Permanent Focal Cerebral Ischemia.
G. Pignataro, R. Gala, O. Cuomo, A. Tortiglione, L. Giaccio, P. Castaldo, R. Sirabella, C. Matrone, A. Canitano, S. Amoroso, et al. (2004)
Stroke 35, 2566-2570
   Abstract »    Full Text »    PDF »
Na+/Ca2+ exchanger overexpression impairs frequency- and ouabain-dependent cell shortening in adult rat cardiomyocytes.
B. Bolck, G. Munch, P. Mackenstein, M. Hellmich, I. Hirsch, H. Reuter, N. Hattebuhr, H.-J. Weig, M. Ungerer, K. Brixius, et al. (2004)
Am J Physiol Heart Circ Physiol 287, H1435-H1445
   Abstract »    Full Text »    PDF »
Molecular biology of ion motive proteins in comparative models.
M. G. Wheatly and Y. Gao (2004)
J. Exp. Biol. 207, 3253-3263
   Abstract »    Full Text »    PDF »
The Cation/Ca2+ Exchanger Superfamily: Phylogenetic Analysis and Structural Implications.
X. Cai and J. Lytton (2004)
Mol. Biol. Evol. 21, 1692-1703
   Abstract »    Full Text »    PDF »
Effect of {beta}-adrenergic stimulation on the relationship between membrane potential, intracellular [Ca2+] and sarcoplasmic reticulum Ca2+ uptake in rainbow trout atrial myocytes.
A. Llach, J. Huang, F. Sederat, L. Tort, G. Tibbits, and L. Hove-Madsen (2004)
J. Exp. Biol. 207, 1369-1377
   Abstract »    Full Text »    PDF »
Molecular Determinants of Na+/Ca2+ Exchange (NCX1) Inhibition by SEA0400.
T. Iwamoto, S. Kita, A. Uehara, I. Imanaga, T. Matsuda, A. Baba, and T. Katsuragi (2004)
J. Biol. Chem. 279, 7544-7553
   Abstract »    Full Text »    PDF »
Molecular Cloning of a Sixth Member of the K+-dependent Na+/Ca2+ Exchanger Gene Family, NCKX6.
X. Cai and J. Lytton (2004)
J. Biol. Chem. 279, 5867-5876
   Abstract »    Full Text »    PDF »
Distribution of K+-Dependent Na+/Ca2+ Exchangers in the Rat Supraoptic Magnocellular Neuron Is Polarized to Axon Terminals.
M.-H. Kim, S.-h. Lee, K. H. Park, W.-K. Ho, and S.-H. Lee (2003)
J. Neurosci. 23, 11673-11680
   Abstract »    Full Text »    PDF »
Preconditioning attenuates ischemia-reperfusion-induced remodeling of Na+-K+-ATPase in hearts.
A. B. Elmoselhi, A. Lukas, P. Ostadal, and N. S. Dhalla (2003)
Am J Physiol Heart Circ Physiol 285, H1055-H1063
   Abstract »    Full Text »    PDF »
An important role for the Na+-Ca2+ exchanger in the decrease in cytosolic Ca2+ concentration induced by isoprenaline in the porcine coronary artery.
J. Yamanaka, J. Nishimura, K. Hirano, and H. Kanaide (2003)
J. Physiol. 549, 553-562
   Abstract »    Full Text »    PDF »
Molecular determinants of cAMP-mediated regulation of the Na+-Ca2+ exchanger expressed in human cell lines.
L.-P. He, L Cleemann, N M Soldatov, and M Morad (2003)
J. Physiol. 548, 677-689
   Abstract »    Full Text »    PDF »
Impaired ability of the Na+/Ca2+ exchanger from the Dahl/Rapp salt-sensitive rat to regulate cytosolic calcium.
E. F. Hwang, I. Williams, G. Kovacs, J. Peti-Peterdi, B. Siroky, W. C. Rice, E. Bates, E. M. Schwiebert, M. T. Unlap, and P. D. Bell (2003)
Am J Physiol Renal Physiol 284, F1023-F1031
   Abstract »    Full Text »    PDF »
Transmural Heterogeneity of Calcium Handling in Canine.
K. R. Laurita, R. Katra, B. Wible, X. Wan, and M. H. Koo (2003)
Circ. Res. 92, 668-675
   Abstract »    Full Text »    PDF »
Relevance of Na+-Ca2+ exchange in heart failure.
W. Schillinger, J. W Fiolet, K. Schlotthauer, and G. Hasenfuss (2003)
Cardiovasc Res 57, 921-933
   Full Text »    PDF »
Differing cardioprotective efficacy of the Na+/Ca2+ exchanger inhibitors SEA0400 and KB-R7943.
W. P. Magee, G. Deshmukh, M. P. Deninno, J. C. Sutt, J. G. Chapman, and W. R. Tracey (2003)
Am J Physiol Heart Circ Physiol 284, H903-H910
   Abstract »    Full Text »    PDF »
Molecular Cloning of a Fourth Member of the Potassium-dependent Sodium-Calcium Exchanger Gene Family, NCKX4.
X.-F. Li, A. S. Kraev, and J. Lytton (2002)
J. Biol. Chem. 277, 48410-48417
   Abstract »    Full Text »    PDF »
A Novel Topology and Redox Regulation of the Rat Brain K+-dependent Na+/Ca2+ Exchanger, NCKX2.
X. Cai, K. Zhang, and J. Lytton (2002)
J. Biol. Chem. 277, 48923-48930
   Abstract »    Full Text »    PDF »
An exchanger-like protein underlies the large Mg2+ current in Paramecium.
W. J. Haynes, C. Kung, Y. Saimi, and R. R. Preston (2002)
PNAS 99, 15717-15722
   Abstract »    Full Text »    PDF »
Recombinant Expression of the Plasma Membrane Na+/Ca2+ Exchanger Affects Local and Global Ca2+ Homeostasis in Chinese Hamster Ovary Cells.
M. Brini, S. Manni, and E. Carafoli (2002)
J. Biol. Chem. 277, 38693-38699
   Abstract »    Full Text »    PDF »
Na+/Ca2+ Exchanger in Porcine Oocytes.
Z. Machaty, J. J. Ramsoondar, A. J. Bonk, R. S. Prather, and K. R. Bondioli (2002)
Biol Reprod 67, 1133-1139
   Abstract »    Full Text »    PDF »
The Molecular Determinants of Ionic Regulatory Differences between Brain and Kidney Na+/Ca2+ Exchanger (NCX1) Isoforms.
J. Dunn, C. L. Elias, H. D. Le, A. Omelchenko, L. V. Hryshko, and J. Lytton (2002)
J. Biol. Chem. 277, 33957-33962
   Abstract »    Full Text »    PDF »
Determinants of cardiac Na+/Ca2+ exchanger temperature dependence: NH2-terminal transmembrane segments.
C. Marshall, C. Elias, X.-H. Xue, H. D. Le, A. Omelchenko, L. V. Hryshko, and G. F. Tibbits (2002)
Am J Physiol Cell Physiol 283, C512-C520
   Abstract »    Full Text »    PDF »
Sodium calcium exchanger plays a key role in alteration of cardiac function in response to pressure overload.
E. TAKIMOTO, A. YAO, H. TOKO, H. TAKANO, M. SHIMOYAMA, M. SONODA, K. WAKIMOTO, T. TAKAHASHI, H. AKAZAWA, M. MIZUKAMI, et al. (2002)
FASEB J 16, 373-378
   Abstract »    Full Text »    PDF »
Altered Na/Ca exchange activity in cardiac hypertrophy and heart failure: a new target for therapy?.
K. R Sipido, P. G.A Volders, M. A Vos, and F. Verdonck (2002)
Cardiovasc Res 53, 782-805
   Abstract »    Full Text »    PDF »
Ca2+ Signaling in Cardiac Myocytes Overexpressing the {alpha}1 Subunit of L-Type Ca2+ Channel.
L.-S. Song, A. Guia, J. N. Muth, M. Rubio, S.-Q. Wang, R.-P. Xiao, I. R. Josephson, E. G. Lakatta, A. Schwartz, and H. Cheng (2002)
Circ. Res. 90, 174-181
   Abstract »    Full Text »    PDF »
Overexpression of the Na/Ca Exchanger Shapes Stimulus-Induced Cytosolic Ca2+ Oscillations in Insulin-Producing BRIN-BD11 Cells.
F. Van Eylen, O. D. Horta, A. Barez, A. Kamagate, P. R. Flatt, R. Macianskiene, K. Mubagwa, and A. Herchuelz (2002)
Diabetes 51, 366-375
   Abstract »    Full Text »    PDF »
Cardiac Na+-Ca2+ Exchange : Molecular and Pharmacological Aspects.
M. Shigekawa and T. Iwamoto (2001)
Circ. Res. 88, 864-876
   Abstract »    Full Text »    PDF »
Structural Domains Influencing Sensitivity to Isothiourea Derivative Inhibitor KB-R7943 in Cardiac Na+/Ca2+ Exchanger.
T. Iwamoto, S. Kita, A. Uehara, Y. Inoue, Y. Taniguchi, I. Imanaga, and M. Shigekawa (2001)
Mol. Pharmacol. 59, 524-531
   Abstract »    Full Text »
In vivo regulation of Na/Ca exchanger expression by adrenergic effectors.
K. L. Golden, J. Ren, J. O'Connor, A. Dean, S. E. DiCarlo, and J. D. Marsh (2001)
Am J Physiol Heart Circ Physiol 280, H1376-H1382
   Abstract »    Full Text »    PDF »
Allosteric Regulation of Na/Ca Exchange Current by Cytosolic Ca in Intact Cardiac Myocytes.
C. R. Weber, K. S. Ginsburg, K. D. Philipson, T. R. Shannon, and D. M. Bers (2001)
J. Gen. Physiol. 117, 119-132
   Abstract »    Full Text »    PDF »
Novel subcellular and molecular tools to study Ca(2+) transport mechanisms during the elusive moulting stages of crustaceans: flow cytometry and polyclonal antibodies.
M Wheatly, Z Zhang, J Weil, J Rogers, and L Stiner (2001)
J. Exp. Biol. 204, 959-966
   Abstract »    PDF »
How can overexpression of Na+,Ca2+-exchanger compensate the negative inotropic effects of downregulated SERCA?.
G. Isenberg (2001)
Cardiovasc Res 49, 1-6
   Full Text »    PDF »
Overexpression of the Na+/Ca2+ exchanger and inhibition of the sarcoplasmic reticulum Ca2+-ATPase in ventricular myocytes from transgenic mice.
C. M.N. Terracciano, K. D. Philipson, and K. T. MacLeod (2001)
Cardiovasc Res 49, 38-47
   Abstract »    Full Text »    PDF »
Functional differences between cardiac and renal isoforms of the rat Na+-Ca2+ exchanger NCX1 expressed in Xenopus oocytes.
A. Ruknudin, S. He, W J Lederer, and D. H Schulze (2000)
J. Physiol. 529, 599-610
   Abstract »    Full Text »    PDF »
NorM of Vibrio parahaemolyticus Is an Na+-Driven Multidrug Efflux Pump.
Y. Morita, A. Kataoka, S. Shiota, T. Mizushima, and T. Tsuchiya (2000)
J. Bacteriol. 182, 6694-6697
   Abstract »    Full Text »
Impaired Contractile Performance of Cultured Rabbit Ventricular Myocytes After Adenoviral Gene Transfer of Na+-Ca2+ Exchanger.
W. Schillinger, P. M. L. Janssen, S. Emami, S. A. Henderson, R. S. Ross, N. Teucher, O. Zeitz, K. D. Philipson, J. Prestle, and G. Hasenfuss (2000)
Circ. Res. 87, 581-587
   Abstract »    Full Text »    PDF »
Sequence Similarities between a Novel Putative G Protein-Coupled Receptor and Na+/Ca2+ Exchangers Define a Cation Binding Domain.
H. Nikkila, D. R. McMillan, B. S. Nunez, L. Pascoe, K. M. Curnow, and P. C. White (2000)
Mol. Endocrinol. 14, 1351-1364
   Abstract »    Full Text »
Hypoxia inhibits the Na+/Ca2+ exchanger in pulmonary artery smooth muscle cells.
Y.-X. WANG, P. K. DHULIPALA, and M. I. KOTLIKOFF (2000)
FASEB J 14, 1731-1740
   Abstract »    Full Text »
Diminished function and expression of the cardiac Na+-Ca2+ exchanger in diabetic rats: implication in Ca2+ overload.
Y. Hattori, N. Matsuda, J. Kimura, T. Ishitani, A. Tamada, S. Gando, O. Kemmotsu, and M. Kanno (2000)
J. Physiol. 527, 85-94
   Abstract »    Full Text »    PDF »
Physiological functions of the regulatory domains of the cardiac Na+/Ca2+ exchanger NCX1.
Y. Pan, T. Iwamoto, A. Uehara, T. Y. Nakamura, I. Imanaga, and M. Shigekawa (2000)
Am J Physiol Cell Physiol 279, C393-C402
   Abstract »    Full Text »    PDF »
Sodium/calcium exchange in amphibian skeletal muscle fibers and isolated transverse tubules.
F. Cifuentes, J. Vergara, and C. Hidalgo (2000)
Am J Physiol Cell Physiol 279, C89-C97
   Abstract »    Full Text »    PDF »
Cloning of mesangial cell Na+/Ca2+ exchangers from Dahl/Rapp salt-sensitive/resistant rats.
M. T. Unlap, J. Peti-Peterdi, and P. D. Bell (2000)
Am J Physiol Renal Physiol 279, F177-F184
   Abstract »    Full Text »    PDF »
Alternatively spliced isoforms of the rat eye sodium/calcium+potassium exchanger NCKX1.
S. Poon, S. Leach, X.-F. Li, J. E. Tucker, P. P. M. Schnetkamp, and J. Lytton (2000)
Am J Physiol Cell Physiol 278, C651-C660
   Abstract »    Full Text »    PDF »
Interaction of PIP2 with the XIP region of the cardiac Na/Ca exchanger.
Z. He, S. Feng, Q. Tong, D. W. Hilgemann, and K. D. Philipson (2000)
Am J Physiol Cell Physiol 278, C661-C666
   Abstract »    Full Text »    PDF »
Gene expression of Na+/Ca2+ exchanger during development in human heart.
Y. Qu, A. Ghatpande, N. El-Sherif, and M. Boutjdir (2000)
Cardiovasc Res 45, 866-873
   Abstract »    Full Text »    PDF »
Functional Analysis of a Disulfide Bond in the Cardiac Na+-Ca2+ Exchanger.
L. Santacruz-Toloza, M. Ottolia, D. A. Nicoll, and K. D. Philipson (2000)
J. Biol. Chem. 275, 182-188
   Abstract »    Full Text »    PDF »
Mammalian Distal Tubule: Physiology, Pathophysiology, and Molecular Anatomy.
R. F. Reilly and D. H. Ellison (2000)
Physiol Rev 80, 277-313
   Abstract »    Full Text »    PDF »
Ionic Regulatory Properties of Brain and Kidney Splice Variants of the Ncx1 Na+-Ca2+ Exchanger.
C. Dyck, A. Omelchenko, C. L. Elias, B. D. Quednau, K. D. Philipson, M. Hnatowich, and L. V. Hryshko (1999)
J. Gen. Physiol. 114, 701-711
   Abstract »    Full Text »    PDF »
Cloning, expression, and characterization of the trout cardiac Na+/Ca2+ exchanger.
X.-H. Xue, L. V. Hryshko, D. A. Nicoll, K. D. Philipson, and G. F. Tibbits (1999)
Am J Physiol Cell Physiol 277, C693-C700
   Abstract »    Full Text »    PDF »
Physiological and molecular characterization of the Na+/Ca2+ exchanger in human platelets.
M. Kimura, E. M. Jeanclos, R. J. Donnelly, J. Lytton, J. P. Reeves, and A. Aviv (1999)
Am J Physiol Heart Circ Physiol 277, H911-H917
   Abstract »    Full Text »    PDF »
Truncation of the C Terminus of the Rat Brain Na+-Ca2+ Exchanger RBE-1 (NCX1.4) Impairs Surface Expression of the Protein.
J. Kasir, X. Ren, I. Furman, and H. Rahamimoff (1999)
J. Biol. Chem. 274, 24873-24880
   Abstract »    Full Text »    PDF »
Chimeric Analysis of Na+/Ca2+ Exchangers NCX1 and NCX3 Reveals Structural Domains Important for Differential Sensitivity to External Ni2+ or Li+.
T. Iwamoto, A. Uehara, T. Y. Nakamura, I. Imanaga, and M. Shigekawa (1999)
J. Biol. Chem. 274, 23094-23102
   Abstract »    Full Text »    PDF »
Sodium/Calcium Exchange: Its Physiological Implications.
M. P. Blaustein and W. J. Lederer (1999)
Physiol Rev 79, 763-854
   Abstract »    Full Text »    PDF »
Cardiac expression of the Na+/Ca2+ exchanger NCX1 is GATA factor dependent.
S. B. Nicholas and K. D. Philipson (1999)
Am J Physiol Heart Circ Physiol 277, H324-H330
   Abstract »    Full Text »    PDF »
Fourier Transform Infrared Spectroscopy Study of the Secondary and Tertiary Structure of the Reconstituted Na+/Ca2+ Exchanger 70-kDa Polypeptide.
R. I. Saba, J.-M. Ruysschaert, A. Herchuelz, and E. Goormaghtigh (1999)
J. Biol. Chem. 274, 15510-15518
   Abstract »    Full Text »    PDF »
Molecular Mechanisms Underlying Ionic Remodeling in a Dog Model of Atrial Fibrillation.
L. Yue, P. Melnyk, R. Gaspo, Z. Wang, and S. Nattel (1999)
Circ. Res. 84, 776-784
   Abstract »    Full Text »    PDF »
Altered protein kinase C activation of Na+/Ca2+ exchange in mesangial cells from salt-sensitive rats.
N. A. Mashburn, M. T. Unlap, J. Runquist, A. Alderman, G. V. W. Johnson, and P. D. Bell (1999)
Am J Physiol Renal Physiol 276, F574-F580
   Abstract »    Full Text »    PDF »
A Circularized Sodium-Calcium Exchanger Exon 2 Transcript.
X.-F. Li and J. Lytton (1999)
J. Biol. Chem. 274, 8153-8160
   Abstract »    Full Text »    PDF »
Direct evidence of Na+/Ca2+ exchange in squid rhabdomeric membranes.
P. J. Bauer, H. Schauf, A. Schwarzer, and J. E. Brown (1999)
Am J Physiol Cell Physiol 276, C558-C565
   Abstract »    Full Text »    PDF »
A New Topological Model of the Cardiac Sarcolemmal Na+-Ca2+ Exchanger.
D. A. Nicoll, M. Ottolia, L. Lu, Y. Lu, and K. D. Philipson (1999)
J. Biol. Chem. 274, 910-917
   Abstract »    Full Text »    PDF »
Involvement of Na+/Ca2+ Exchanger in Inside-Out Signaling Through the Platelet Integrin alpha IIbbeta 3.
M. Shiraga, Y. Tomiyama, S. Honda, H. Suzuki, S. Kosugi, S. Tadokoro, Y. Kanakura, K. Tanoue, Y. Kurata, and Y. Matsuzawa (1998)
Blood 92, 3710-3720
   Abstract »    Full Text »    PDF »
Overexpression of the Sarcolemmal Calcium Pump in the Myocardium of Transgenic Rats.
A. Hammes, S. Oberdorf-Maass, T. Rother, K. Nething, F. Gollnick, K. W. Linz, R. Meyer, K. Hu, H. Han, P. Gaudron, et al. (1998)
Circ. Res. 83, 877-888
   Abstract »    Full Text »    PDF »
Na+ -Ca2+ exchange and sarcoplasmic reticular Ca2+ regulation in ventricular myocytes from transgenic mice overexpressing the Na+ -Ca2+ exchanger.
C. M N Terracciano, A. I De Souza, K. D Philipson, and K. T MacLeod (1998)
J. Physiol. 512, 651-667
   Abstract »    Full Text »    PDF »
Differential inhibition of Na+/Ca2+ exchanger isoforms by divalent cations and isothiourea derivative.
T. Iwamoto and M. Shigekawa (1998)
Am J Physiol Cell Physiol 275, C423-C430
   Abstract »    Full Text »    PDF »
Na+/Ca2+ exchange in neonatal rat heart cells: antisense inhibition and protein half-life.
M. K. Slodzinski and M. P. Blaustein (1998)
Am J Physiol Cell Physiol 275, C459-C467
   Abstract »    Full Text »    PDF »
A Novel Molecular Determinant for cAMP-dependent Regulation of the Frog Heart Na+-Ca2+ Exchanger.
Y. M. Shuba, T. Iwata, V. G. Naidenov, M. Oz, K. Sandberg, A. Kraev, E. Carafoli, and M. Morad (1998)
J. Biol. Chem. 273, 18819-18825
   Abstract »    Full Text »    PDF »
Regulation of Na+/Ca2+ exchange activity by cytosolic Ca2+ in transfected Chinese hamster ovary cells.
Y. Fang, M. Condrescu, and J. P. Reeves (1998)
Am J Physiol Cell Physiol 275, C50-C55
   Abstract »    Full Text »    PDF »
Structure-Function Relationships and Localization of the Na/Ca-K Exchanger in Rod Photoreceptors.
T. S. Y. Kim, D. M. Reid, and R. S. Molday (1998)
J. Biol. Chem. 273, 16561-16567
   Abstract »    Full Text »    PDF »
Cloning, Expression, and Characterization of the Squid Na+-Ca2+ Exchanger (NCX-SQ1).
Z. He, Q. Tong, B. D. Quednau, K. D. Philipson, and D. W. Hilgemann (1998)
J. Gen. Physiol. 111, 857-873
   Abstract »    Full Text »    PDF »
Na+/Ca2+ exchange in catfish retina horizontal cells: regulation of intracellular Ca2+ store function.
M. A. Micci and B. N. Christensen (1998)
Am J Physiol Cell Physiol 274, C1625-C1633
   Abstract »    Full Text »    PDF »
Structure-Function Analysis of CALX1.1, a Na+-Ca2+ Exchanger from Drosophila. MUTAGENESIS OF IONIC REGULATORY SITES.
C. Dyck, K. Maxwell, J. Buchko, M. Trac, A. Omelchenko, M. Hnatowich, and L. V. Hryshko (1998)
J. Biol. Chem. 273, 12981-12987
   Abstract »    Full Text »    PDF »
Modifications of myocardial Na+,K+-ATPase isoforms and Na+/Ca2+ exchanger in aldosterone/salt-induced hypertension in guinea pigs.
J. F. Ramnrez-Gil, P. Trouve, N. Mougenot, A. Carayon, P. Lechat, and D. Charlemagne (1998)
Cardiovasc Res 38, 451-462
   Abstract »    Full Text »    PDF »
Expression of the Na+/Ca2+ exchanger emerges in hepatic stellate cells after activation in association with liver fibrosis.
T. Nakamura, S. Arii, K. Monden, M. Furutani, Y. Takeda, M. Imamura, M. Tominaga, and Y. Okada (1998)
PNAS 95, 5389-5394
   Abstract »    Full Text »    PDF »



To Advertise     Find Products


Science. ISSN 0036-8075 (print), 1095-9203 (online)