Evolution of ventricular myocyte electrophysiology.
暂无分享,去创建一个
Min Dong | Qinghong Yan | Michael Sanguinetti | D. Mckinnon | M. Sanguinetti | S. Liou | QingHong Yan | B. Rosati | David McKinnon | M. Dong | Hong-Sheng Wang | Barbara Rosati | Hong-Sheng Wang | Shian-Ren Liou | Lan Cheng | Ji Young Park | Elaine Shiang | E. Shiang | Lan Cheng
[1] F. Hainsworth. Scaling: why is animal size so important? , 1985 .
[2] Lei Wang,et al. Glucocorticoid regulation of cardiac K+ currents and L-type Ca2+ current in neonatal mice. , 1999, Circulation research.
[3] R A Bassani,et al. Relaxation in rabbit and rat cardiac cells: species‐dependent differences in cellular mechanisms. , 1994, The Journal of physiology.
[4] D. Mckinnon,et al. Identification of Two Nervous System-Specific Members of theerg Potassium Channel Gene Family , 1997, The Journal of Neuroscience.
[5] J. Nerbonne,et al. Concordant expression of KChIP2 mRNA, protein and transient outward current throughout the canine ventricle , 2003, The Journal of physiology.
[6] G. Gintant,et al. Tissue and species distribution of mRNA for the IKr-like K+ channel, erg. , 1997, Circulation research.
[7] A. Coulombe,et al. Expression of heart K+ channels in adrenalectomized and catecholamine-depleted reserpine-treated rats. , 2003, Journal of molecular and cellular cardiology.
[8] A. Szücs,et al. Extended dynamic clamp: controlling up to four neurons using a single desktop computer and interface , 2001, Journal of Neuroscience Methods.
[9] D. Bers,et al. Sarcoplasmic reticulum Ca2+ uptake and thapsigargin sensitivity in permeabilized rabbit and rat ventricular myocytes. , 1993, Circulation research.
[10] Mario J. Garcia,et al. Scaling of diastolic intraventricular pressure gradients is related to filling time duration. , 2006, American journal of physiology. Heart and circulatory physiology.
[11] W. Giles,et al. A time- and voltage-dependent K+ current in single cardiac cells from bullfrog atrium , 1986, The Journal of general physiology.
[12] Jeffery P. Demuth,et al. The Evolution of Mammalian Gene Families , 2006, PloS one.
[13] M. Morad,et al. Species differences in the activity of the Na(+)‐Ca2+ exchanger in mammalian cardiac myocytes. , 1995, The Journal of physiology.
[14] D. Mckinnon,et al. Comparison of different probe-level analysis techniques for oligonucleotide microarrays. , 2004, BioTechniques.
[15] J. Prothero. Heart weight as a function of body weight in mammals. , 1979, Growth.
[16] C. Ianuzzo,et al. Contractile and calcium regulating capacities of myocardia of different sized mammals scale with resting heart rate , 1991, Molecular and Cellular Biochemistry.
[17] N. Gostling,et al. From DNA to Diversity: Molecular Genetics and the Evolution of Animal Design , 2002, Heredity.
[18] J. P. Holt,et al. Ventricular volumes and body weight in mammals. , 1968, The American journal of physiology.
[19] N Westerhof,et al. Matching between ventricle and arterial load. An evolutionary process. , 1991, Circulation research.
[20] W. Catterall,et al. Overview of Molecular Relationships in the Voltage-Gated Ion Channel Superfamily , 2005, Pharmacological Reviews.
[21] ZhiboLu,et al. Density and Kinetics of IKr and IKs in Guinea Pig and Rabbit Ventricular Myocytes Explain Different Efficacy of IKs Blockade at High Heart Rate in Guinea Pig and Rabbit , 2001 .
[22] D. Mckinnon,et al. Molecular basis of the T‐ and L‐type Ca2+ currents in canine Purkinje fibres , 2007, The Journal of physiology.
[23] Lior Pachter,et al. VISTA: computational tools for comparative genomics , 2004, Nucleic Acids Res..
[24] D. Mckinnon,et al. Regional variation in mRNA transcript abundance within the ventricular wall. , 2006, Journal of molecular and cellular cardiology.
[25] Harold Bien,et al. Scaffold topography alters intracellular calcium dynamics in cultured cardiomyocyte networks. , 2004, American journal of physiology. Heart and circulatory physiology.
[26] Michael Ritter,et al. Comparison of sarcoplasmic reticulum Ca2+-ATPase function in human, dog, rabbit, and mouse ventricular myocytes. , 2003, Journal of molecular and cellular cardiology.
[27] G. Wray. The evolutionary significance of cis-regulatory mutations , 2007, Nature Reviews Genetics.
[28] E. Marbán,et al. Molecular dissection of cardiac repolarization by in vivo Kv4.3 gene transfer. , 2000, The Journal of clinical investigation.
[29] A. Prinz,et al. Effect of simulated I(to) on guinea pig and canine ventricular action potential morphology. , 2006, American journal of physiology. Heart and circulatory physiology.
[30] Jamie I Vandenberg,et al. Slowed conduction and ventricular tachycardia after targeted disruption of the cardiac sodium channel gene Scn5a , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[31] M. Schuermans,et al. Sarcolipin and phospholamban mRNA and protein expression in cardiac and skeletal muscle of different species. , 2005, The Biochemical journal.
[32] Jean-Michel Claverie,et al. FusionDB: a database for in-depth analysis of prokaryotic gene fusion events , 2004, Nucleic Acids Res..
[33] D. Mckinnon,et al. Role of the Kv4.3 K+ channel in ventricular muscle. A molecular correlate for the transient outward current. , 1996, Circulation research.
[34] D. Roden,et al. Common Sodium Channel Promoter Haplotype in Asian Subjects Underlies Variability in Cardiac Conduction , 2006, Circulation.
[35] Godfrey L. Smith,et al. Comparison of Ca2+ release and uptake characteristics of the sarcoplasmic reticulum in isolated horse and rabbit cardiomyocytes. , 2004, American journal of physiology. Heart and circulatory physiology.
[36] J. Gerhart,et al. Evolution at Two Levels : On Genes and Form , 2005 .
[37] K. Campbell,et al. Auxiliary subunits: essential components of the voltage-gated calcium channel complex , 2003, Current Opinion in Neurobiology.
[38] W. Giles,et al. A mathematical model of action potential heterogeneity in adult rat left ventricular myocytes. , 2001, Biophysical journal.
[39] J. Nerbonne,et al. Molecular physiology of cardiac repolarization. , 2005, Physiological reviews.
[40] T. Attwood,et al. Phylogenomic analysis and evolution of the potassium channel gene family. , 2003, Receptors & channels.
[41] Francisco Bezanilla,et al. A comparison of propagated action potentials from tropical and temperate squid axons: different durations and conduction velocities correlate with ionic conductance levels. , 2002, The Journal of experimental biology.
[42] D. Bers. Cardiac excitation–contraction coupling , 2002, Nature.
[43] Antti Nurmi,et al. Temperature-dependent expression of sarcolemmal K(+) currents in rainbow trout atrial and ventricular myocytes. , 2002, American journal of physiology. Regulatory, integrative and comparative physiology.
[44] M. Sanguinetti,et al. Coassembly of K(V)LQT1 and minK (IsK) proteins to form cardiac I(Ks) potassium channel. , 1996, Nature.
[45] J. Nerbonne,et al. ERG proteins and functional cardiac I(Kr) channels in rat, mouse, and human heart. , 2001, Trends in cardiovascular medicine.
[46] N Westerhof,et al. Normalized input impedance and arterial decay time over heart period are independent of animal size. , 1991, The American journal of physiology.
[47] Hong-Sheng Wang,et al. Role of the transient outward current (Ito) in shaping canine ventricular action potential – a dynamic clamp study , 2005, The Journal of physiology.
[48] J. Coyne,et al. THE LOCUS OF EVOLUTION: EVO DEVO AND THE GENETICS OF ADAPTATION , 2007, Evolution; international journal of organic evolution.
[49] M. Sanguinetti,et al. A mechanistic link between an inherited and an acquird cardiac arrthytmia: HERG encodes the IKr potassium channel , 1995, Cell.
[50] J. Striessnig. Pharmacology, Structure and Function of Cardiac L-Type Ca2+ Channels , 1999, Cellular Physiology and Biochemistry.
[51] J. Nerbonne,et al. Targeted Deletion of Kv4.2 Eliminates Ito,f and Results in Electrical and Molecular Remodeling, With No Evidence of Ventricular Hypertrophy or Myocardial Dysfunction , 2005, Circulation research.
[52] P. Backx,et al. Prevention of Hypertrophy by Overexpression of Kv4.2 in Cultured Neonatal Cardiomyocytes , 2002, Circulation.
[53] S Miyazaki,et al. Potassium current and the effect of cesium on this current during anomalous rectification of the egg cell membrane of a starfish , 1976, The Journal of general physiology.
[54] W. R. Stahl,et al. Scaling of respiratory variables in mammals. , 1967, Journal of applied physiology.