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^ abTakeshima H, Nishimura S, Matsumoto T, Ishida H, Kangawa K, Minamino N, Matsuo H, Ueda M, Hanaoka M, Hirose T, Numa S. (1989). “Primary structure and expression from complementary DNA of skeletal muscle ryanodine receptor”. Nature339: 439–45. doi:10.1038/339439a0. PMID2725677.
^Numa S, Tanabe T, Takeshima H, Mikami A, Niidome T, Nishimura S, Adams BA, Beam KG (1990). “Molecular insights into excitation-contraction coupling”. Cold Spring Harb. Symp. Quant. Biol.55: 1–7. doi:10.1101/SQB.1990.055.01.003. PMID1966760.
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^Nakanishi S, Teranishi Y, Noda M, Notake M, Watanabe Y, Kakidani H, Jingami H, Numa S. (1980). “The protein-coding sequence of the bovine ACTH-β-LPH precursor gene is split near the signal peptide region”. Nature287: 752–5. PMID6253815.
^Noda M, Furutani Y, Takahashi H, Toyosato M, Hirose T, Inayama S, Nakanishi S, Numa S. (1982). “Cloning and sequence analysis of cDNA for bovine adrenal preproenkephalin”. Nature295: 202–206. doi:10.1038/295202a0. PMID6276759.
^Noda M, Teranishi Y, Takahashi H, Toyosato M, Notake M, Nakanishi S, Numa S. (1982). “Isolation and structural organization of the human preproenkephalin gene”. Nature297: 431–434. doi:10.1038/297431a0. PMID6281660.
^Kakidani H, Furutani Y, Takahashi H, Noda M, Morimoto Y, Hirose T, Asai M, Inayama S, Nakanishi S, Numa S. (1982). “Cloning and sequence analysis of cDNA for porcine β-neo-endorphin/dynorphin precursor”. Nature298: 245–9. doi:10.1038/298245a0. PMID6123953.
^Furutani Y, Morimoto Y, Shibahara S, Noda M, Takahashi H, Hirose T, Asai M, Inayama S, Hayashida H, Miyata T, Numa S. (1983). “Cloning and sequence analysis of cDNA for ovine corticotropin-releasing factor precursor”. Nature301: 537–540. doi:10.1038/301537a0. PMID6600512.
^Noda M, Takahashi H, Tanabe T, Toyosato M, Kikyotani S, Hirose T, Asai M, Takashima H, Inayama S, Miyata T, Numa S. (1983). “Primary structures of β- and δ-subunit precursors of Torpedo californica acetylcholine receptor deduced from cDNA sequences”. Nature301: 251–5. doi:10.1038/301251a0. PMID6687403.
^Noda M, Takahashi H, Tanabe T, Toyosato M, Kikyotani S, Furutani Y, Hirose T, Takashima H, Inayama S, Miyata T, Numa S. (1983). “Structural homology of Torpedo californica acetylcholine receptor subunits”. Nature302: 528–532. doi:10.1038/302528a0. PMID6188060.
^Noda M, Furutani Y, Takahashi H, Toyosato M, Tanabe T, Shimizu S, Kikyotani S, Kayano T, Hirose T, Inayama S, Numa S. (1983). “Cloning and sequence analysis of calf cDNA and human genomic DNA encoding alpha-subunit precursor of muscle acetylcholine receptor”. Nature305: 818–823. doi:10.1038/305818a0. PMID6688857.
^Mishina M, Kurosaki T, Tobimatsu T, Morimoto Y, Noda M, Yamamoto T, Terao M, Lindstrom J, Takahashi T, Kuno M, Numa S. (1984). “Expression of functional acetylcholine receptor from cloned cDNAs”. Nature307: 604–608. doi:10.1038/307604a0. PMID6320016.
^Takai T, Noda M, Mishina M, Shimizu S, Furutani Y, Kayano T, Ikeda T, Kubo T, Takahashi H, Takahashi T, Kuno M, Numa S. (1985). “Cloning, sequencing and expression of cDNA for a novel subunit of acetylcholine receptor from calf muscle”. Nature315: 761–764. doi:10.1038/315761a0. PMID3839289.
^Mishina M, Takai T, Imoto K, Noda M, Takahashi T, Numa S, Methfessel C, Sakmann B (1986). “Molecular distinction between fetal and adult forms of muscle acetylcholine receptor”. Nature321: 406–411. doi:10.1038/321406a0. PMID2423878.
^Mikami A, Imoto K, Tanabe T, Niidome T, Mori Y, Takeshima H, Narumiya S, Numa S. (1989). “Primary structure and functional expression of the cardiac dihydropyridine-sensitive calcium channel”. Nature340: 230–233. doi:10.1038/340230a0. PMID2474130.
^Mori Y, Friedrich T, Kim MS, Mikami A, Nakai J, Ruth P, Bosse E, Hofmann F, Flockerzi V, Furuichi T, Mikoshiba K, Imoto K, Tanabe T, Numa S. (1991). “Primary structure and functional expression from complementary DNA of a brain calcium channel”. Nature350: 398–402. doi:10.1038/350398a0. PMID1849233.
^Tanabe T, Beam KG, Powell JA, Numa S. (1988). “Restoration of excitation-contraction coupling and slow calcium current in dysgenic muscle by dihydropyridine receptor complementary DNA”. Nature336: 134–139. doi:10.1038/336134a0. PMID2903448.
^Kubo T, Fukuda K, Mikami A, Maeda A, Takahashi H, Mishina M, Haga T, Haga K, Ichiyama A, Kangawa K, Kojima M, Matsuo H, Hirose T, Numa S. (1986). “Cloning, sequencing and expression of complementary DNA encoding the muscarinic acetylcholine receptor”. Nature323: 411–416. doi:10.1038/323411a0. PMID3762692.
^Fukuda K, Kubo T, Akiba I, Maeda A, Mishina M, Numa S. (1987). “Molecular distinction between muscarinic acetylcholine receptor subtypes”. Nature327: 623–625. doi:10.1038/327623a0. PMID3110621.
^Nukada T, Tanabe T, Takahashi H, Noda M, Hirose T, Inayama S, Numa S. (1986). “Primary structure of the alpha-subunit of bovine adenylate cyclase-stimulating G-protein deduced from the cDNA sequence”. FEBS Lett.195 (1-2): 220–4. PMID3080331.
^Tanabe T, Nukada T, Nishikawa Y, Sugimoto K, Suzuki H, Takahashi H, Noda M, Haga T, Ichiyama A, Kangawa K, Minamino N, Matsuo H, Numa S. (1985). “Primary structure of the α-subunit of transducin and its relationship to ras proteins”. Nature315: 242–245. doi:10.1038/315242a0. PMID3923359.
^Sugimoto K, Nukada T, Tanabe T, Takahashi H, Noda M, Minamino N, Kangawa K, Matsuo H, Hirose T, Inayama S Numa S. (1985). “Primary structure of the β-subunit of bovine transducin deduced from the cDNA sequence”. FEBS Lett.191: 235–240. doi:10.1016/0014-5793(86)80164-8. PMID2414128.
^Kaupp UB, Niidome T, Tanabe T, Terada S, Bönigk W, Stühmer W, Cook NJ, Kangawa K, Matsuo H, Hirose T, Miyata T, Numa S. (1989). “Primary structure and functional expression from complementary DNA of the rod photoreceptor cyclic GMP-gated channel”. Nature342: 762–6. doi:10.1038/342762a0. PMID2481236.
^Kawakami K, Noguchi S, Noda M, Takahashi H, Ohta T, Kawamura M, Nojima H, Nagano K, Hirose T, Inayama S, Hayashida H, Miyata T, Numa S. (1985). “Primary structure of the α-subunit of Torpedo californica (Na+ + K+)ATPase deduced from cDNA sequence”. Nature316: 733–736. doi:10.1038/316733a0. PMID2993905.
^Numa, S.; Nakanishi, S. (1981). “Corticotropin-β-lipotropin precursor — a multi-hormone precursor — and its gene”. Trends in Biochemical Sciences6: 274–277. doi:10.1016/0968-0004(81)90099-2.