Developmental Modulation of Specific Receptor for Atrial Natriuretic Peptide in the Rat Heart

  • Kim, Yoon-Ah (Department of Physiology, Medical School, and Institute for Medical Science, Chonbuk National University) ;
  • Kim, Soo-Mi (Department of Physiology, Medical School, and Institute for Medical Science, Chonbuk National University) ;
  • Kim, Suhn-Hee (Department of Physiology, Medical School, and Institute for Medical Science, Chonbuk National University) ;
  • Kim, Sung-Zoo (Department of Physiology, Medical School, and Institute for Medical Science, Chonbuk National University)
  • 발행 : 2002.09.01

초록

Although cardiac distribution of specific receptors for atrial natriuretic peptide (ANP) was mainly observed in the ventricular endocardium, the modulation of ANP receptors in relation to cardiac development is not defined. The present study was undertaken to investigate ANP receptor modulation in rat during development. In the developmental stages examined (fetus, after postnatal 3-days, 1-, 2-, 3-, 4-, and 8-week-old Sprague Dawley rats) specific ANP binding sites were localized in the right and left ventricular endo-cardia by quantitative in vitro receptor autoradiography using (equation omitted)-rat ANP as labeled ligand. The specific bindings to endocardium were much higher in the right than the left ventricle. The binding affinities of ANP were much higher in the right than the left ventricular endocardium. The difference of these binding affinities among various developmental stages was not observed in the right ventricle, whereas the binding affinity in left ventricle was gradually increased with aging and reached the peak value at 8 weeks. No significant difference in maximal binding capacities of endocardial bindings was observed in the right and left ventricular endocardia during developmental stages. Also, cGMP production via activation of particulate guanylyl cyclase-coupled receptor subtypes in the ventricular membranes was gradually decreased with close relationship to aging. Therefore, the present study show that the endocardial ANP receptor is modulated with close relationship to cardiac development in the left ventricle rather than the right ventricle, and may be involved in regulating myocardial contractility in left heart.

키워드

참고문헌

  1. Akimoto K, Miyata A, Hayakawa K, Kangawa K and Matsuo H (1988) Plasma and atrial levels of atrial natriuretic peptide (ANP) in pulmonary hyperensive rats, Life Sci 43: 1125-1132 https://doi.org/10.1016/0024-3205(88)90471-7
  2. Atarashi K, Mulrow PP, Franco-Saenz R, Snajdar R and Rapp J (1984) Inhibition of aldosterone production by an atrial extract, Science 224: 992-994 https://doi.org/10.1126/science.6326267
  3. Benfenati F, Cimino M, Aganti LF and Fuxe K (1986) Quantitative autoradiography of central neurotransmitter receptor: methodological and statistical aspects with special reference to computer-assisted image analysis, Acta physiol Scand 128: 129-146 https://doi.org/10.1111/j.1748-1716.1986.tb07960.x
  4. Bianchi C, Gutkowska J, thibault G, Garcia R, Genest J, and Cantin M (1985) Radioautographic localization $^{125}I$-atrial natriuretic factor (ANF) in rat tissues, Histochemistry 82: 441-452 https://doi.org/10.1007/BF02450479
  5. Brown J and Chen Q (1995) Regional expression of natriuretic peptide receptors diromg the formation of arterial neointima in the rabbit, Circ Res 77: 906-918 https://doi.org/10.1161/01.RES.77.5.906
  6. Brown LA, Nunez DJR, and Wilkins MR (1993) Differential regulation of natriuretic peptide receptor messenger RNAs duringthe development of cardiac hypertrophy in the rat, J Clin Invest 92: 2702-2712 https://doi.org/10.1172/JCI116887
  7. Brutsaert DL, Fransen P, Andries LJ, De Keulenaer GW, and Sys SU (1998) Cardiac endothelium and myocardial function, Cardiaovasc Res 38: 281-290 https://doi.org/10.1016/S0008-6363(98)00044-3
  8. Chinkers M, Garbers DL, Chang M-S, Lowe DG, Chin H, Goeddel DV and Schulz S (1989) A membrane form of guanylate cyclase is an atrial natriuretic peptide receptor, Nature 338: 78-83 https://doi.org/10.1038/338078a0
  9. Cho KW, Kim SH, Kim CH and Koh GY (1995) Mechanical basis of ANP secretion in beating atria: atrial stroke volum and ECF translocation, Am J Physiol 268: R1129-R1136
  10. Cho KW, Kim SH, Koh GY and Seul KH (1988) Renal and hormonal responses to atrial natriuretic peptide and turtle artrial extract in the freshwater turtle, Amyda japonica, J Exp Zool 247: 139-145 https://doi.org/10.1002/jez.1402470205
  11. Cho KW, Seul KH, Kim SH, Seul KM and Koh GY (1991) Atrial pressure, distension, and pacing frequency in ANP secretion in isolated perfused rabbit atria, Am J Physiol 260: R39-R46
  12. Comini L, Agnoletti G, Panzali A, Mantero G, Pasini E, Gaia G, Albertini A and Ferrai R (1995) Activation of ANP synthesis during congestive heart failure in rats treated withmonocrotaline, Am J Physiol 268: H391-H398
  13. Currie MG, Geller DM, Cole BR, Boylan JC, Ysheng W, Holmberg SW and Needleman P (1983) Bioactive cardiac substance: potent vasorelaxant activity in mamalian atria, Science 221: 71-73 https://doi.org/10.1126/science.6857267
  14. De Bold AJ, Borenstein HB, Veress AT and Sonnenberg H (1981) A rapid and potent natriuretic response to intravenous injections of atrial mycocardial extracts, Life Sci 28: 89-94 https://doi.org/10.1016/0024-3205(81)90370-2
  15. De Hert SG, Gillebert TC, Andries LJ AND Brutsaert DL (1993) Role of the endocardial endothelium in the regulation of myocardial function: Physiologic and pathophysiologic implications, Anesthesiology 73: 1354-1366 https://doi.org/10.1097/00000542-199312000-00027
  16. Flynn TD, De Bold M and De Bold AJ (1983) The amino acid sequence of an atrial peptide with potent diuretic and natriuretic properties, Biochem Biophys Res Commun 117: 859-865 https://doi.org/10.1016/0006-291X(83)91675-3
  17. Genest J and Cantin M (1989) The atrial natriuretic factor: its physiology and biochemistry, Rev Physiol Biochem Pharmacol 110: 1-145
  18. Hirata Y, Suzuki E, Hayakawa H, Matsuoka H, Sugimoto T, Kojima M, Kangawa K and Matsuo H (1992) Role of endogenous ANP in sodium excretion in rats with experimental pulmonary hypertension, Am J Physiol 262: H1684-H1689
  19. Joseph LJ, Desai KB, Mehta MN and Mathiyarasu R (1988) Measurement of specific activity of radiolabelled antigens by a simple radioimmunoassay technique, Nucl Med Biol 15: 589-590
  20. Kim SH, Lee KS, Kim SZ, Seul KH and Cho KW (2000) Postnatal changes in atrial compliance and stretch-induced ANP secretion in rabbits, Korean J Physiol Pharmacol 4: 393-401
  21. Kim SH, Han JH, Lim SH, Lee SJ, Kim SZ and Cho KW (2001) Attenuation of inhibitory effect of CNP on the secretion of ANP from hypertrophied atria, Am J Physiol 281: R1456-R1463
  22. Kim SH, Han JH, Cao C, Kim SZ and Cho KW (2002) Postnatal changes in inhibitory effect of C-type natriuretic peptide on secretion of ANP, Am J Physiol 282: R1672-R1679 https://doi.org/10.1152/ajpregu.00563.2001
  23. Kim SZ, Cho KW and Kim SH (1999) Modulation of endocardial natriuretic peptide recptors in rights ventricular hypertrophy, Am J Physiol 277: H2280-H2289
  24. Kim SZ, Cho KW and Kim SH (1999) Localization of receptors for natriuretic peptide and endotherlin in the duct of the epididymis of the freshwater turtle, Gen Comp Endocrinol 118: 26-38 https://doi.org/10.1006/gcen.1999.7445
  25. Kim SZ, Kim SH, Park JK, Koh GY and Cho KW (1998) Presence and biological activity of C-type natriuretic peptide-dependent guanylate cyclase-coupled receptor in the penile corpus cavemosum, J Urol 159: 1741-1746 https://doi.org/10.1097/00005392-199805000-00104
  26. Koller KJ, Lowe DG, Bennett GL, Minamino N, Kangawa K, Mastuo H andGoeddel DV 1991) Selective activation of B natriuretic peptide receptor by C-type natriuretic peptide (CNP), Science 252: 120-123 https://doi.org/10.1126/science.1672777
  27. Leitman DC, Andresen JW, Catalano RM, Waldman SA, Tuan JJ and Murad F (1988) Atrial natriuretic peptide binding, cross-linking and stimulation of cyclic GMP accumulation and particulate guanylate cyclase activity in cultured cells, J Biol Chem 263: 3720-3728
  28. Lim X ,Hanze J, Heese F, Sodmann R and Lang RE (1995) Gene expression of natriuretic peptide receptors in myocardial, Circ Res 77: 750-758 https://doi.org/10.1161/01.RES.77.4.750
  29. Maack T, Suzuki M, Almeida FA, Nussenzveig D, Scarborough RM, McEnroe GA and Lewicki JA (1987) Physilogical roel of silent receptors of atrial natriuretic factor, Science 238: 675-678 https://doi.org/10.1126/science.2823385
  30. Munson PJ and Rodbard D (1980) LIGAND; a versatile computerized approach for characterization of ligand binding system, Anal Biochem107: 220-239 https://doi.org/10.1016/0003-2697(80)90515-1
  31. Nunez DJR, Dickson MC and Brown MJ (1992) Natriuretic peptide receptor mRNAs in the rat and human heart, J Clin Invest 90: 1966-1971 https://doi.org/10.1172/JCI116075
  32. Oehlenschlager WF, Baron DA, Schomer H and Currie MG (1989) Atrial and brain natriuretic peptides share binding sites in the kidney and heart, Eur J Pharmacol 161: 159-164 https://doi.org/10.1016/0014-2999(89)90838-8
  33. Rutherford RAD, Wharton J, Gordon L, Moscoso G, Yacoub MH and Polack JM (1992) Enodcardial localization and characterization of natriuretic peptide binding sites in human fetal and adult heart, Eur J Pharmacol 212: 1-7 https://doi.org/10.1016/0014-2999(92)90064-B
  34. Schenk DB, Phelps MN, Porter GJ, Fuller Fl, Cordell B and Lewicki JA (1987) Purification and subunit composition of artrial natriuretic peptide receptor, Proc Natl Acad Sci USA 84: 1521-1525 https://doi.org/10.1073/pnas.84.6.1521
  35. Silberbach M and Roberts CT (2001) Natriuretic peptide signalling: Molecular and cellular pathways to growth regulation, Cell Signall 13: 221-231 https://doi.org/10.1016/S0898-6568(01)00139-5
  36. Sudoh T;Kangawa K;Minamino N;Matsuo H (1988) A new natriuretic peptide in porcine brain, Nature 332: 78-81 https://doi.org/10.1038/332078a0
  37. Sudoh T, Minamino N, Kangawa K and Matsuo H (1990) C-type natriuretic peptide (CNP): a new member of natriuretic peptide family identified in porcine brain, Biochem Biophys Res Commun 168: 863-870 https://doi.org/10.1016/0006-291X(90)92401-K
  38. Wilcox JN, Augustine A, Goeddel DV and Lowe DG (1991) Differential regional expression of three natriuretic peptide receptor genes within primate tissues, Mol Cell Biol 11: 3454-3462
  39. Biochem Biophys Res Commun v.168 C-type natriuretic peptide (CNP): a new member of natriuretic peptide family identified in porcine brain Sudoh T;Minamino N;Kangawa K;Matsuo H https://doi.org/10.1016/0006-291X(90)92401-K
  40. Mol Cell Biol v.11 Differential regional expression of three natriuretic peptide receptor genes within primate tissues Wilcox JN;Augustine A;Goeddel DV;Lowe DG https://doi.org/10.1128/MCB.11.7.3454