11
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Production of Polyclonal Antibody to the Bovine Adrenal Atrial Natriuretic Factor-R1 Receptor

, , , , , , & show all
Pages 485-505 | Published online: 26 Sep 2008

References

  • Needleman P., Adams S. P., Cole B. R., Currie M. G., Geller D. M., Michener M. L., Saper C. B., Schwartz D., Standaert D. G. Atriopeptins as cardiac hormones. Hypertension 1985; 7: 469–482
  • Cantin M., Genest J. The heart and the atrial natriuretic factor. Endocr. Rev 1985; 6: 107–126
  • Atlas S. A. Atrial natriuretic factor: a new hormone of cardiac origin. Recent Prog Horm. Res. 1986; 42: 207–249
  • Lang R. E., Unger T., Ganten D. Atrial natriuretic peptide: a new factor in blood pressure control. J. Hypertens. 1987; 5: 255–271
  • Waldman S. A., Rapoport R. M., Murad F. Atrial natriuretic factor selectively activates particulate guanylate cyclase and elevates cyclic GMP in rat tissues. J. Biol. Chem. 1984; 259: 14332–14334
  • Hamet P., Tremblay J., Pang S. C., Garcia R., Thibault G., Gutkowska J., Cantin M., Genest J. Effect of native and synthetic atrial natriuretic factor on cyclic GMP. Biochem. Biophys. Res. Commun. 1984; 123: 515–527
  • Waldman S. A., Rapoport R. M., Fiscus R. R., Murad F. Effect of atriopeptin on particulate guanylate cyclase from rat adrenal. Biochim Biophys. Acta 1985; 845: 298–303
  • Winquist R. J., Faison E. P., Waldman S. A., Schwartz K., Murad F., Rapoport R. M. Atrial natriuretic factor elicits an endothelium-independent relaxation and activates particulate guanylate cyclase in vascular smooth muscle. Proc. Natl Acad. Sci. USA 1984; 81: 7661–7664
  • Tremblay J., Gerzer R., Vinay P., Pang S. C., Béliveau R., Hamet P. The increase of cGMP by atrial natriuretic factor correlates with the distribution of particulate guanylate cyclase. FEBS Lett. 1985; 181: 17–22
  • Leitman D. C., Andresen J. W., Kuno T., Kamisaki Y., Chang J.-K., Murad F. Identification of multiple binding sites for atrial natriuretic factor by affinity cross-linking in cultured endothelial cells. J. Biol. Chem. 1986; 261: 11650–11655
  • de Léan A. Amiloride potentiates atrial natriuretic factor inhibitory action by increasing receptor binding in bovine adrenal zona glomerulosa. Life Sci 1986; 39: 1109–1116
  • Takayanagi R., Inagami T., Snajdar R. M., Imada T., Tamura M., Misono K. S. Two distinct forms of receptors for atrial natriuretic factor in bovine adrenocortical cells. Purification, ligand binding, and peptide mapping. J. Biol. Chem. 1987; 262: 12104–12113
  • Meloche S., McNicoll N., Liu B., Ong H., de Léan A. Atrial natriuretic factor R1 receptor from bovine adrenal zona glomerulosa: purification, characterization, and modulation by amiloride. Biochemistry 1988; 27: 8151–8158
  • Kuno T., Andresen J. W., Kamisaki Y., Waldman S. A., Chang L. Y., Saheki S., Leitman D. C., Nakane M., Murad F. Co-purification of an atrial natriuretic factor receptor and particulate guanylate cyclase from rat lung. J. Biol. Chem. 1986; 261: 5817–5823
  • Paul A. K., Marala R. B., Jaiswal R. K., Sharma R. K. Coexistence of guanylate cyclase and atrial natriuretic factor receptor in a 180-kD protein. Science 1987; 235: 1224–1226
  • Chinkers M., Garbers D. L., Chang M.-S., Lowe D. G., Chin H., Goeddel D. V., Schulz S. A membrane form of guanylate cyclase is an atrial natriuretic peptide receptor. Nature 1989; 338: 78–83
  • Lowe D. G., Chang M.-S., Hellniss R., Chen E., Singh S., Garbers D. L., Goeddel D. V. Human atrial natriuretic peptide receptor defines a new paradigm for second messenger signal transduction. EMBO J. 1989; 8: 1377–1384
  • Pandey K. N., Singh S. Molecular cloning and expression of murine guanylate cyclase/atrial natriuretic factor receptor cDNA. J. Biol. Chem. 1990; 265: 12342–12348
  • Koesling D., Herz J., Gausepohl H., Niroomand F., Hinsch K. D., Mulsch A., Bohme E., Schultz G., Frank R. The primary structure of the 70 kDa subunit of bovine soluble guanylate cyclase. FEES Lett. 1988; 239: 29–34
  • Schenk D. B., Phelps M. N., Porter J. G., Fuller F., Cordell B., Lewicki J. A. Purification and subunit composition of atrial natriuretic peptide receptor. Proc. Natl Acad. Sci. USA 1987; 84: 1521–1525
  • Shimonaka M., Saheki T., Hagiwara H., Ishido M., Nogi A., Fujita T., Wakita K.-I., Inada Y., Kondo J., Hirose S. Purification of atrial natriuretic peptide receptor from bovine lung. Evidence for a disulfide-linked subunit structure. J. Biol. Chem. 1987; 262: 5510–5514
  • Fuller F., Poster J. G., Arfsten A. E., Miller J., Schilling J. W., Scarborough R. M., Lewicki J. A., Schenk D. B. Atrial natriuretic peptide clearance receptor. J. Biol. Chem. 1988; 263: 9395–9401
  • Maack T., Suzuki M., Almeida F. A., Nussenzveig D., Scarborough R. M., McEnroe G. A., Lewicki J. A. Physiological role of silent receptors of atrial natriuretic factor. Science 1987; 238: 675–678
  • Nussenzveig D. R., Lewicki J. A., Maack T. Cellular mechanisms of the clearance function of type C receptors of atrial natriuretic factor. J. Biol. Chem. 1990; 265: 20952–20958
  • Anand-Srivastava M. B., Srivastava A. K., Cantin M. Pertussis toxin attenuates atrial natriuretic factor-mediated inhibition of adenylate cyclase. Involvement of inhibitory guanine nucleotide regulatory protein. J. Biol. Chem. 1987; 262: 4931–4934
  • Anand-Srivastava M. B., Sairam M. R., Cantin M. Ring-deleted analogs of atrial natriuretic factor inhibit adenylate cyclase/cAMP system. Possible coupling of clearance atrial natriuretic factor receptors to adenylate cyclase/cAMP signal transduction system. J. Biol. Chem. 1990; 265: 8566–8572
  • Hirata M., Chang C. H., Murad F. Stimulatory effects of atrial natriuretic factor on phosphoinositide bydrolysis in cultured bovine aortic smooth muscle cells. Biochim. Biophys. Acta 1989; 1010: 346–351
  • Liu B., Meloche S., McNicoll N., Lord C., de Léan A. Topographical characterization of the domain structure of the bovine adrenal atrial natriuretic factor R1 receptor. Biochemistry 1989; 28: 5599–5605
  • Larose L., McNicoll N., Ong H., de Léan A. Allosteric modulation by ATP of the bovine adrenal natriuretic factor R1 receptor functions. Biochemistry 1991; 30: 8990–8995
  • Takada M., Takenchi H., Shino M., Hamano S., Orgoh T. Production and characterization of monoclonal antibodies against particulate guanylate cyclase porcine kidney. Biochem. Biophys. Res. Commun. 1988; 164: 653–663
  • Patel A., Linden J. Purification of 125I-labeled succinyl cyclic nucleotide tyrosine methyl esters by high-performance liquid chromatography. Anal. Biochem. 1988; 168: 417–420
  • Fethière J., Meloche S., Nguyen T. T., Ong H., de Léan A. Distinct properties of atrial natriuretic factor receptor subpopulations in epithelial and fibroblast cell lines. Mol. Pharmacol. 1989; 35: 584–592
  • Neville D. M., Jr. Isolation of an organ specific protein antigen from cell-surface membrane of rat liver. Biochim. Biophys. Acta 1968; 154: 540–552
  • Larose L., McNicoll N., Rondeau J.-J., Escher E., de Léan A. Photoaffinity labelling of atrial natriuretic factor (ANF)-R1 receptor by underivatized 125I-ANF. Involvement of lipid peroxidation. Biochem. J. 1990; 267: 379–384
  • Garbers D. L., Murad F. Guanylate cyclase assay methods. Adv. Cyclic Nucleotides Res. 1979; 10: 57–67
  • Steiner A. L., Parker C. W., Kipnis D. M. Radioimmunoassay for cyclic nucleotides. J. Biol. Chem. 1972; 247: 1106–1113
  • Harper J. F., Brooker G. J. Femtomole sensitive radioimmunoassay for cyclic AMP and cyclic GMP after 2'O acetylation by acetic anhydride in aqueous solution. Cyclic Nucleotide Res. 1975; 1: 207–218
  • White A. A., Zenser T. V. Separation of cyclic 3′, 5′-nucleoside monophosphates from other nucleotides on aluminium oxide columns. Application to the assay of adenyl cyclase and guanyl cyclase. Anal. Biochem 1971; 41: 372–396
  • Laemmli U. K. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 1970; 227: 680–685
  • de Léan A., Hancock A. A., Lefkowitz R. J. Validation and statistical analysis of a computer modeling method for quantitative analysis of radioligand binding data for mixtures of pharmacological receptor subtypes. Mol. Pharmacol. 1982; 21: 5–16

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.