Hoppe et al. Distinct gene-specific mechanisms of arrythmia revealed by cardiac gene transfer of two long QT disease genes, HERG adn KCNE1. Apr. 24, 2001. PNAS 98(9): 5335-5340.* |
Monteggia, LM et al. Cloning and localization of the hyperpolarization-activated cyclic nucleotide-gated channel family in rat brain. Molecular Brain Research. Sep. 2000, vol. 81 (1-2), pp. 129-139.* |
Altomare C, et al., “Integrated allosteric model of voltage gating of HCN channels,” J Gen Physiol, (2001) 117(6):519-532. (Exhibit 5). |
Altomar C, et al., “Allosteric Voltage-Dependent Gating of HCN Channels,” (abstract) (Exhibit 6). |
DiFrancesco, D. “Generation and control of cardiac pacing: the pacemaker current,” Trends Cardiovasc. Med, (1991), 1:250-255. (Exhibit 7). |
Ellingsen, O. et al., “Adult rat ventricular myocytes cultured in defined medium: phenotype and electromechanical function,” Am. J Physiol, (1993), 265(2):747-754. (Exhibit 8). |
Porciatti F. et al., “The pacemaker current If in single human atrial myocytes and the effect of beta-adrenoceptor and Al-adenosine receptor simulation,” Br J Pharmocol, (1991), 122(6): 963-969. (Exhibit 9). |
Shi W. et al., “The distribution and prevalence of HCN isoforms in the canine heart and their relation to the voltage dependence of If9” (Exhibit 10) abstract. |
Vassalle M. et al. Pacemaker channels and cardiac automaticity In “Cardiac Electrophysiology. From Cell to Bedside”, Eds. (Zipes D. and Jalife W.B. Saunders Co. Philadelphia, PA, 2000, pp. 94-103). (Exhibit 11). |
Wainger, B.J. et al., “Molecular mechanism of cAMP modulation of HCN pacemaker channels,” Nature, (2001), 411(6839):805-810. (Exhibit 12). |
Michael R. Rosen et al., “A High Throughput Biological Heart Rate Monitor that is Molecularly Determined,” U.S. Ser. No. 09/898,417, filed Jul. 3, 2001. (Exhibit 13). |
Abbot G.W. et al., “MiPR1 forms Ikr potassium channels with HERG and is associated with cardiac arrhythmia cell,”. (1999), 97(2):175-187, (Exhibit 2). |
Accili E.A. et al., “Properties and modulation of If in newborn versus adult cardiac SA node,” Am. J. Physiol, (1991), 272:1549-1552. (Exhibit 3). |
Accili E.A. et al., “Differential control of the hyperpolarization-activated current (If) by intracellular cAMP and phosphates inhibition,” J. Physiol, (1996) 491:115, (Exhibit 4). |
DiFrancesco D: The cardiac hyperpolarizing-activated current, If: Origins and developments. Prog. BiophysMol. Biol. vol. 46, No. 3, 1985, pp. 163-183; (Exhibit 2). |
Zhou Z and Lipsius SL: Effect of isoprenaline on If current in latent pacemaker cells isolated from cat right atrium: ruptured vs. perforated patch whole-cell recording methods. Pflugers Arch. vol. 423, No. 5 Pt. 6, Jun. 1993, pp. 442-447; (Exhibit 3). |
Thuringer D, et al.: A hyperpolarization-activated inward current in human myocardial cells. JmolCell. Cardiol. vol. 24, No. 5, May 1992, pp. 451-455; (Exhibit 4). |