Blackshear et al., "Proteins kinase C-dependent and -independent pathways of protooncogene induction in human astrocytma cells," J. Biol. Chem. 262(16):7774-7781 (1987). |
Boulter et al., "Functional expression of two neuronal nicotinic acetylcholine receptors from cDNA clones identifies a gene family," Proc. Natl. Acad. Sci. USA 84:7763-7767 (1987). |
Ellis et al., "Replacement of insulin receptor tyrosine residues 1162 and 1163 compromises insulin-stimulated kinase activity and uptake of 2-deoxyglucose," Cell 45:721-732 (1986). |
Green berg et al., "Stimulation of neuronal acetylcholine receptors induces rapid gene transcription," Science 234:80-83 (1986). |
Peralta et al., "Distinct primary structures, ligand-binding properties and tissue-specific expression of four human muscarinic acetylcholine receptors," EMBO J. 6(13):3923-3929 (1987). |
Stumpo et al., "Induction of c-fos sequences involved in induction by insulin and phorbol esters," J. Biol. Chem. 264(4):1611-1614 (1988). |
Borsotto et al. (1985) "The 1,4-dihydropyridine receptor associated with the skeletal muscle voltage-dependent Ca.sup.2+ channel," J. Biol. Chem., 260(26): 14255-14263. |
Claudio et al. (1987) "Genetic reconstitution of functional acetylcholine receptor channels in mouse fibroblasts," Science, 238: 1688-1694. |
Claudio et al. (1987) "Stable expression of transfected Torpedo acetylcholine receptor .alpha. subunits in mouse fibroblast L cells," Proc. Natl. Acad. Sci., 84:5967-5971. |
Cooper et al. (1987) "Purification and characterization of the dihydropyridine-sensitive voltage-dependent calcium channel from cardiac tissue," J. Biol. Chem., 262(2): 509-512. |
Dascal et al. (1986) Expression of modulation of voltage-gated calcium channels after RNA injection in Xenopus oocytes, Science, 231: 1147-1150. |
Leung et al. (1988) "Monoclonal antibody characterization of the 1,4-dihydropyridine receptor of rabbit skeletal muscle," Ann. N.Y. Acad. Sci., 522: 43-46. |
Nakayama et al. (1987) "Purification of a putative Ca.sup.2+ channel protein from rabbit skeletal muscle," J. Biol. Chem., 262: 6572-6576. |
Leung, et al. "Structural characterization of the 1,4-dihydropyridine receptor of the voltage-dependent Ca.sup.2+ channel from rabbit skeletal muscle," J. Biol. Chem., 262(17): 7943-7946 (1987). |
Curtis et al. (1984) "Purification of the calcium antagonist receptor of the voltage-sensitive calcium channel from skeletal muscle transverse tubules," Biochemistry, 23(10): 2113-2118. |
Schmid et al. (1986), "Immunochemical analysis of subunit structure of 1,4-dihydropyridine receptors associated with voltage-dependent Ca.sup.2+ channels in skeletal, cardiac, and smooth muscles," Biochemistry, 25: 3492-3495. |
Seager, et al., Ann. N.Y. Acad. Sci. 522:43-46 (1988). |
Takahashi et al. (1987) "Dihydropyridine-sensitive calcium channels in cardiac and skeletal muscle membranes: studies with antibodies against the .alpha.-subunits," Biochemistry, 26(17): 1518-1526. |
Vaghy et al. (1988) "Mechanism of action of calcium channel modulator drugs," Ann. N.Y. Acad. Sci., 522: 176-186. |
Wood (1987) Wood, "Gene cloning based on long oligonucleotide probes," Methods in Enzymology, 152: 443-447. |
Brust et al., "Human Neuronal Voltage-Dependent Calcium Channels: Studies on Subunit Structure and Role in Channel Assembly", Neuropharmacology 32(11):1089-1102 (1993). |
Williams, et al., "Structure and functional expression of .alpha..sub.1, .alpha..sub.2 and .beta. subunits of a novel human neuronal calcium channel subtype," Neuron, 8:71-84 (1992). |
Williams et al., "Structure and Functional Expression of an .omega.-Conotoxin-Sensitive Human N-Type Calcium Channel", Science 257:389-395 (1992). |
Williams et al., "Structure and Functional Characterization of Neuronal .alpha..sub.1E Calcium Channel Subtypes," J. Biol. Chem. 269(35):22347-22357 (1994). |
Leung, et al., "Biochemical and ultrastructural characterization of the 1,4-dihydropyridine receptor from rabbit skeletal muscle," J. Biol. Chem. 263(2):994-1101 (1988). |
Imagawa, et al., "Phosphorylation of the 1,4-dihydropyridine receptor of the voltage-dependent Ca.sup.2+ channel by an intrinsic protein kinase in isolated triads from rabbit skeletal muscle," J. Biol. Chem. 262(17):8333-8339 (1987). |
Miller, "Multiple calcium channels and neuronal function," Science 234:46-52 (1987)Miller (1987) Multiple calcium channels and neuronal function, Science, 235: 46-52. |
Kozak, "An analysis of 5'-noncoding sequences from 699 vertebrate messenger RNAs," Nucleic Acids Research 15(20):8125-8148 (1987). |
von Heijne, "Signal sequences: the limits of variation," J. Mol. Biol. 184:99-105 (1985). |
Hubbard, et al., "Synthesis and processing of asparagine-linked oligosacchardes.sup.1,2," Ann. Rev. Biochem. 50:555-583 (1981). |
Faramisco, et al., "Optimal spatial requirements for the location of basic residues in peptide substrates for the cyclic AMP-dependent protein kinase," J. Biol. Chem. 225(9):4240-4245 (1980). |
Takahashi & Catterall, "Identification of an .alpha. subunit of dihydropyridine-sensitive brain calcium channels," Science 236:88-91 (1987). |
Hofmann, et al., "Regulation of the L-type calcium channel," TIPS 8:393-398 (1987). |
Curtis, et al., "Reconstitution of the voltage-sensitive calcium channel purified from skeletal muscle transverse tubules," Biochemistry 25:3077-3083 (1986). |
Smith, et al., "Calcium channel activity in a purified dihydropyridine-receptor preparation of skeletal muscle," Biochemistry 26:7182-7188 (1987). |
Ellis, et al, "Sequence and expression of mRNAs encoding the .alpha..sub.1 and .alpha..sub.2 subunits of DHP-sensitive calcium channel," Science 241:1661-1664 (1988). |
Vaghy, et al., "Identification of a Novel 1,4-Dihydropyridine-and Phenylalkylamine-binding Polypeptide in Calcium Channel Preparations," J. Biol. Chem. 262:14337-14342 (1987). |
Meshi, et al., "Nucleotide sequence of the 30K protein cistron of cowpea strain of tobacco mosaic virus," Nucleic Acids Research 10:6111-6117 (1982). |
Nikaido, et al., "Molecular cloning of cDNA encoding human interleukin-2 receptor," Nature 311:631-636 (1984). |
Noda, et al., "Existence of distinct sodium channel messenger RNAs in rat brain," Nature 320:188-192 (1986). |
Noda, et al., "Expression of functional sodium channels from cloned cDNA," Nature 322:826-828 (1986). |
Mierendorf, et al., "Gene Isolation by Screening .gamma.gt11 Libraries with Antibodies," Methods in Enzymology 152:458-469 (1986). |
Gustin, et al., "Ion Channels in Yeast," Science 233:1195-1197 (1986). |
Striessnig, et al., "Photoaffinity labelling of the phenylalkylamine receptor of the skeletal muscle transverse-tubule calcium channel," FEBS Letters 212:247-253 (1987). |
Curran and Morgan, "Barium Modulates c-fos Expression and Post-Translational Modification," Proc. Natl. Acad. Sci. USA 83:8521-8524 (1986). |
Fisch, et al., "c-fos Sequences Necessary for Basal Expression and Induction by Epidermal Growth Factor, 12-O-Tetradecanoyl Phorbol-13-Acetate, and the Calcium Ionophore," Mol. Cell. Biol. 7:3490-3502 (1987). |
Barhanin, et al., "The Calcium Channel Antagonists Receptor from Rabbit Skeletal Muscle: Reconstitution after Purification and Subunit Characterization" Eur. J. Biochem. 164:525-531 (1987). |
Sieber, et al., "The 165-KDa Peptide of the Purified Skeletal Muscle Dihydropyridine REceptor Contains the Known Regulatory Sites of the Calcium Channel," Eur. J. Biochem. 167:117-122 (1987). |
Lang, et al., "The Effect of Myasthenic Syndrome Antibody on Presynaptic Channels in the Mouse," J. Physiol. 390:257-270 (1987). |
Catterall, et al., "Molecular Properties of Dihydropyridine-sensitive Calcium Channels in Skeletal Muscle," J. Biol. Chem. 263:3535-3538 (1988). |
Takahashi and Catterall, "Dihydropyridine-sensitive Calcium Channels in Cardiac and Skeletal Muscle Membranes: Studies with Antibodies against the Alpha Subunits," Biochemistry 26:5518-5526 (1987). |
Morton and Froehner, "Monoclonal Antibody Identifies a 200-kDA Subunit of the Dihydropyridine-sensitive Calcium Channel," J. Biol. Chem. 262:11904-11907 (1987). |
Sharp, et al, "Identification and Characterization of the Dihydropyridine-binding Subunit of the Skeletal Muscle Dihydropyridine Receptor," J. Biol. Chem. 62:12309-12315 (1987). |
Takahashi, et al., "Subunit Structure of Dihydropyridine-sensitive Calcium Channels from Skeletal Muscle," Proc. Natl. Acad. Sci. USA 84:5478-5482 (1987). |
Tanabe, et al., "Primary Structure of the Receptor for Calcium Channel Blockers from Skeletal Muscle," Nature 328:313-318 (1987). |
Nakayama, et al., "Purification of a Putative Ca.sup.+2 Channel Protein from Rabbit Skeletal Muscle," J. Biol. Chem. 262:6572-6576 (1987). |
Williams et al., "Structure and Functional Expression of an .omega.-Contoxin-Sensitive Human N-Type Calcium Channel", Science 257:389-395 (1992). |
Williams, et al., "Structure and functional characterization of neuronal .alpha..sub.1E calcium channel subtypes," J. Biol. Chem. 269(35):22347-22357 (1994). |
Brust, et al., "Human Neuronal Voltage-Dependent Calcium Channels: Studies on Subunit Structure and Role in Channel Assembly", Neuropharmacology 32(11):1089-1102 (1993). |