Hillier et al., Genbank-est 109 Database, Accession No. H45591, Jul. 1995.* |
Adelman, J. P. et al. (1992) “Calcium-Activated Potassium Channels Expressed from Cloned Complementary DNAs,” Neuron, 9: 209-216 (Exhibit 2). |
Adelman J. P. (1995) “Proteins that Interact with the Pore- Forming Subunits of Voltage-Gated Ion Channels,” Current Opinion in Neurobiology, 5(3): 286-295 (Exhibit 3). |
Aiba, H. et al. (1982) “Molecular Cloning and Nucleotide Sequencing of the Gene for E. coli cAMP Receptor Protein,” Nucleic Acids Res., 10(4): 1345-1361 (Exhibit 4). |
Arancio, O. et al. (1995) “Activity-Dependent Long-Term Enhancement of Trasmitter Release by Presynaptic 3′,5′-Cyclic GMP in Cultured Hippocampal Neurons,” Nature, 376: 74-80 (Exhibit 5). |
Atkinson, N. S. et al. (1991) “A Component of Calcium-Activated Potassium Channels Encoded by the Drosophila slo Locus,” Science, 253(5019): 551-555 (Exhibit 6). |
Bolshakov, V. Y. (1997) “Recruitment of New Sites of Synaptic Transmission During the cAMP-Dependent Late Phase of LTP at CA3-CA1 Synapses in the Hippocampus,” Neuron, 19: 635-651 (Exhibit 7). |
Bradley, J. et al. (1997) “Functional Expression of the Heteromeric ‘Olfactory’ Cyclic Nucleotide-Gated Channel in the Hippocampus: A Potential Effector of Synaptic Plasticity in Brain Neurons,” J. of Neurosci., 17(6): 1993-2005 (Exhibit 8). |
Bradley, J. et al. (1994) “Heteromeric Olfactory Cyclic Nucleotide-Gated Channels: A Subunit That Confers Increasedd Sensitivity to cAMP,” Proc. Natl. Acad. Sci. USA, 91: 8890-8894 (Exhibit 9). |
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Chen, T. Y. et al. (1993) “A New Subunit of the Cyclic Nucleotide-Gated Cation Channel in Retinal Rods,” Nature, 362: 764-767 (Exhibit 12). |
Erickson, P. F. et al. (1982) “Quantitative Electrophoretic Transfer of Polypeptides from SDS Polyacrylamide Gels to Nitrocellulose Sheets: A Method for Their Re-Use in Immunoautoradiographic Detection of Antigens,” J. Immunol. Methods, 51: 241-249 (Exhibit 13). |
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Ingram, S. L. et al. (1996) “Modulation of the Hyperpolarization-Activated Current (Ih) by Cyclic Nucleotides in Guinea-Pit Primary Afferent Neurons,” J. Physiol., 492: 97-227 (Exhibit 18). |
Jenkins, Y. et al. (1992) “A Sequence-Specific Molecular Light Switch: Tethering of an Oligonucleotide to a Dipyridophenazine Complex of Ruthenium(II),” J. Am. Chem. Soc., 114(22): 8736-8738 (Exhibit 19). |
Kamb, A. et al. (1987) “Molecular Characterization of Shaker, a Drosophila Gene That Encodes a Potassium Channel,” Cell, 50(3): 405-413 (Exhibit 20). |
Kaupp, U. B. et al. (1989) “Primary Structure and Functional Expression from Complementary DNA of the Rod Photoreceptor Cyclic GMP-Gated Channel,” Nature, 342: 762-766(Exhibit 21). |
Kohler, M. et al. (1996) “Small-Conductance, Calcium-Activated Potassium Channels from Mammalian Brain,” Science, 273: 1709-1714 (Exhibit 22). |
Krapivinsky, G. et al. (1995) “Gβp Binds Directly to G Protein-Gated K+ Channel, IKACh,” J. Biol. Chem., 270: 29059-29062 (Exhibit 23). |
Lidofsky, S. D. (1996)“Regulation of Cation-Selective Channels in Liver Cells,” J. Membr. Biol., 157: 231-236 (Exhibit 24). |
Liman, E. R. et al. (1994) “A Second Subunit of the Olfactory Cyclic Nucleotide-Gated Channel Confers High Sensitivity to cAMP,” Neuron, 13: 611-621 (Exhibit 25). |
Martinez, R. (1987) “Neuronal pp60c-src Contains a Six-Amino Acid Insertion Relative to Its Non-Neuronal Counterpart,” Science, 237: 411-415 (Exhibit 26). |
Matthaei, F. S. et al. (1986) “Rapid and Effective Transfer of Integral Membrane Proteins from Isoelectric Focusing Gels to Nitrocellulose Membranes,” Anal. Biochem., 157: 123-128 (Exhibit 27). |
Marunaka, Y. et al. (1991) “Cyclic GMP-Activated Channel Activity in Renal Epithelial Cells (A6),” Biochim. Biophys. Acta, 1070: 152-156 (Exhibit 28). |
Pallanck, L. & Ganetzky, B. (1994) “Cloning and Characterization of Human and Mouse Homologs of the Drosophila Calcium-Activated Potassium Channel Gene, Slowpoke,” Hum. Mol. Genet., 3: 1239-1243 (Exhibit 29). |
Papazian, D. M. et al. (1991) “Alteration of Voltage-Dependence of Shaker Potassium Channel by Mutations in the S4 Sequence,” Nature, 349(24): 305-310 (Exhibit 30). |
Papazian, D. M. et al. (1987) “Cloning of Genomic and Complementary DNA from Shaker, a Putative Potassium Channel Gene from Drosophila,” Science, 237: 749-753 (Exhibit 31). |
Pawson, T. (1995) “Protein Modules and Signalling Networks,” Nature, 373(16): 573-580 (Exhibit 32). |
Pedarzani, P. et al. (1995) “Protein Kinase A-Independent Modulation of Ion Channels in the Brain by Cyclic AMP,” Proc. Natl. Acad. Sci. USA, 92: 11716-11720 (Exhibit 33). |
Santoto, B. et al. (1997) “Interactive Cloning with the SH3 Domain of N-src Identifies a New Brain Specific Ion Channel Protein, with Homology to Eag and Cyclic Nucleotide-Gated Channels,” Proc. Natl. Acad. Sci. USA, 94: 14815-14820 (Exhibit 34). |
Sheng, M. et al. (1994)“Contrasting Subcellular Localization of the Kv1.2 K+ Channel Subunbit in Different Neurons of Rat Brain,” J. Neurosci., 14(4): 2408-2417 (Exhibit 35). |
Staub, O. et al. (1996) “WW Domain of Nedd4 Bind to the Proline-Rich PY Motifs in the Epithelial Na+ Channel Deleted in Liddle's Syndrome,” EMBO J, 15(10): 2371-2380 (Exhibit 36). |
Strong, M. et al. (1993) “Molecular Evolution of Voltage-Sensitive Ion Channel Genes: On the Origins of Electrical Excitability,” Mol. Biol. Evol., 10(1): 221-242 (Exhibit 37). |
Sudol, M. (1996) “The WW Module Competes with the SH3 Domain?” Trends in Biochem. Sci., 21: 161-163 (Exhibit 38). |
Sugrue, M. M. et al. (1990)“Immunocytochemical Localization of the Neuron-Specific Form of the c-src Gene Product, pp60c-src(+), in Rat Brain,” J. Neurosci., 10(8): 2513-2527 (Exhibit 39). |
Thomas, M. J. et al. (1996) “Activity-Dependent β-Adrenergic Modulation of Low Frequency Stimulation Induced LTP in the Hippocampal CA1 Region,” Neuron, 17: 475-482 (Exhibit 40). |
Wang, H. et al. (1994) “Localization of Kv1.2, Two K Channel Proteins, to Synaptic Terminals, Somata, and Dendrites in the Mouse Brain,” J.Neurosci., 14: 4588-4599 (Exhibit 41). |
Warmke, J. W. et al. (1991) “A Family of Potassium Channel Genes Related to Eag in Drosophila and Mammals,” Science, 91: 3438-3442 (Exhibit 42). |
Warmke, J. W. et al. (1991) “A Distinct Potassium Channel Polypeptide Encoded by the Drosophila Eag Locus,” Proc. Natl. Acad. Sci. USA, 252(5012): 1560-1562 (Exhibit 43). |
Weber, I. T. et al. (1989) “Predicted Structure of the cGMP Binding Domains of the cGMP-Dependent Protein Kinase: A Key Alanine/Threonine Difference in Evolutionary Divergence of cAMP and cGMP Binding Sites,” Biochemistry, 28: 6122-6127 (Exhibit 44). |
Zagotta, W. N. et al. (1996) “Structure and Function of Cyclic Nucleotide-Gated Channels,” Annu. Rev. Neurosci., 19: 235-263 (Exhibit 45). |
Zervos, A. S. et al. (1993) “Mxi1, a Protein That Specifically Interacts with Max to Bind Myc-Max Recognition Sites,” Cell, 72: 223-232 (Exhibit 46). |
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