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Research Article

Two α1b-Adrenergic Receptor Mrnas Expressed in Sprague-Dawley Rat Liver Have Distinct 5′-Regions

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Pages 119-137 | Published online: 26 Sep 2008

References

  • Adelman J. P., Bond C. T., Douglass J., Herbert E. Two mammalian genes transcribed from opposite strands of the same DNA locus. Science 1987; 235: 1514–1517
  • Berger S. L. Direct mapping of rare messenger RNAs by means of oligomer directed ribonuclease H cleavage. Anal. Biochem. 1987; 161: 272–279
  • Bylund D. B. Subtypes of α- and α2-adrenergic receptors. FASEB J. 1992; 6: 832–839
  • Carrazana E. J., Pasieka K. B., Majzoub J. A. The vasopressin mRNA poly(A) tract is unusually long and increases during stimulation of vasopressin gene expression in vivo. Molec. Cell. Biol. 1988; 8: 2267–2274
  • Cathala G., Savouret J.-F., Mendez B., West B. L., Karin M., Marial J. A., Baxter J. D. A method for isolation of intact, translationally active ribonucleic acid. DNA 1983; 2: 329–335
  • Collins S., Bouvier M., Bolanowski M. A., Caron M. G., Lefkowitz R. J. cAMP stimulates transcription of the β2-adrenergic receptor gene in response to short-term agonist exposure. Proc. Natl. Acad. Sci. USA 1989; 86: 4853–4857
  • Cotecchia S., Schwinn D. A., Randall R. R., Lefkowitz R. J., Caron M. G., Kobilka B. K. Molecular cloning and expression of the cDNA for the hamster α1-adrenergic receptor. Proc. Natl. Acad. Sci. USA 1988; 85: 7159–7163
  • Gao B., Kunos G. Isolation and characterization of the gene encoding the rat αlb adrenergic receptor. Gene
  • Henikoff S., Keene M. A., Fechtel K., Fristrom J. W. Gene within a gene: Nested Drosophila genes encode unrelated proteins on opposite DNA strands. Cell 1986; 44: 33–42
  • Irminger J.-C., Rosen K. M., Humbel R. E., Villa-Komaroff L. Tissuespecific expression of insulin-like growth factor II mRNAs with distinct 5′ untranslated regions. Proc. Natl. Acad. Sci. USA 1987; 84: 6330–6334
  • Ishikawa Y., Bianchi C., Nadal-Ginard B., Homcy C. J. Alternative promoter and 5′ exon generate a novel Gsα mRNA. J. Biol. Chem. 1990; 265: 8458–8462
  • Kozasa T., Itoh H., Tsukamoto T., Kaziro Y. Isolation and characterization of the human Gsα. Proc. Natl. Acad. Sci. 1988; 85: 2081–2085
  • Lazar M. A., Hodin R. A., Darling D. S., Chin W. W. A novel member of the thyroid/steroid hormone receptor family is encoded by the opposite strand of the rat c-erbAα transcriptional unit. Molec. Cell. Biol. 1989; 9: 1128–1136
  • Lomasney J. W., Cotecchia S., Lorenz W., Leung W.-Y., Schwinn D. A., Yang-Feng T. L., Brownstein M., Lefkowitz R. J., Caron M. G. Molecular cloning and expression of the cDNA for the αlA-adrenergic receptor. J. Biol. Chem. 1991; 266: 6365–6369
  • Lund P. K., Hoyt E. C., Van Wyk J. J. The size heterogeneity of rat insulin-like growth factor-I mRNAs is due primarily to differences in the length of 3′-untranslated sequence. Molec. Endocrinol. 1989; 3: 2054–2061
  • Maeda A., Kubo T., Mishina M., Numa S. Tissue distribution of mRNAs encoding muscarinic acetylcholine receptor subtypes. FEES Lett 1988; 239: 339–342
  • McGehee R. E., Jr., Cornett L. E. Alternative mRNAs encoding the αlb-adrenergic receptor are expressed in a tissue-dependent manner in the Sprague Dawley rat. J. Recept. Res. 1991; 11: 773–790
  • McGehee R. E., Jr., Rossby S. P., Cornett L. E. Detection by Northern analysis of αl-adrenergic receptor gene transcripts in the rat. Molec. Cell. Endocrin. 1990; 74: 1–9
  • Mitsuhashi T., Nikodem V. M. Regulation of expression of the alternative mRNAs of the rat α-thyroid hormone receptor gene. J. Biol. Chem. 1989; 264: 8900–8904
  • O'Malley K. L., Mack K. J., Gandelman K.-Y., Todd R. D. Organization and expression of the rat D2A receptor gene: Identification of alternative transcripts and a variant donor splice site. Biochem. 1990; 29: 1367–1371
  • Pekhletsky R. I., Chernov B. K., Rubtsov P. M. Variants of the 5′-untranslated sequence of human growth hormone receptor mRNA. Molec. Cell. Endocrin. 1992; 90: 103–109
  • Robishaw J. D., Smigel M. D., Gilman A. G. Molecular basis for two forms of the G protein that stimulates adenylate cyclase. J. Biol. Chem. 1986; 261: 9587–9590
  • Sargent T. D., Wu J.-R., Sala-Trepat J. M., Wallace R. B., Reyes A. A., Bonner J. The rat serum albumin gene: Analysis of cloned sequences. Proc. Natl. Acad. Sci. 1979; 76: 3256–3260
  • Schibler U., Hagenbuchle O., Wellauer P. K., Pittet A. C. Two promoters of different strengths control the transcription of the mouse alpha-amylase gene Amy-la in the parotid gland and liver. Cell 1983; 33: 501–508
  • Schwinn D. A., Lomasney J. W., Lorenz W., Szklut P. J., Fremeau R. T., Jr., Yang-Feng T. L., Caron M. G., Lefkowitz R. J., Cotecchia S. Molecular cloning and expression of the cDNA for a novel αl-adrenergic receptor subtype. J. Biol. Chem. 1990; 265: 8183–8189
  • Shirota M., Banville D., Ali S., Jolicoeur C., Boutin J.-M., Edery M., Djiane J., Kelly P. A. Expression of two forms of prolactin receptor in rat ovary and liver. Molec. Endocrinol. 1990; 4: 1136–1143
  • Summers R. J., McMartin L. R. Adrenoceptors and their second messenger systems. J. Neurochem. 1993; 60: 10–23
  • Thomas P. S. Hybridization of denatured RNA and small DNA fragments transferred to nitrocellulose. Proc. Natl. Acad. Sci. USA 1980; 77: 5201–5205
  • Voigt M. M., Kispert J., Chin H. Sequence of a rat brain cDNA encoding an alpha-1B adrenergic receptor. Nuc. Acid. Res. 1990; 18: 1053
  • Wada K., Yokotani N., Hunter C., Koi K., Wenthold R. J., Shimasaki S. Differential expression of two distinct forms of mRNA encoding members of a dipeptidyl aminopeptidase family. Proc. Natl. Acad. Sci. USA 1992; 89: 197–201

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