PHYSIOLOGY OF CARDIAC ADRENOCEPTORS
Keywords:
cholesterol, physiology, cardiovascular physiology, adrenergic-receptorsAbstract
Adrenoceptors (adrenergic receptors, AR.'s) are seven-loop proteins which, docked in the p/asmatic membrane, respond to catecholaminergic stimuli. They are classified in alpha-adrenergic receptors (a.-adrenoceptors ar a.AR. 's) e beta-adrenergic receptors ( -adrenoceptors or AR. 's). There are two main subtypes of a/pha
-adrenergic receptors (a.1anda.) and three subtypes of beta-adrenergic receptors
< v2and ); besides, there's specu/ation about the existence of the receiver 4.
1
The a. - adrenergic receptors activates the intracelular mechanism of
phospholipase C, generating inositol triphosphate (IP3) and diacylglicerol as
intracellular second-messengers, while the a.2- adrenergic receptors is coupled to the adenylate cyclase generating mechanism and, in intracellular milieu, reduce
the formation of adenosine monophosphate cyclic, inhibiting the calcium channel, so that the activation of this subclass receptor promotes inhibitory effects in the ce/1 where it is present. Nevertheless, ai/ -adrenoceptors increase the formation of intracel/ular adenosine monophosphate cyclic. When there are prolonged stimuli, they trigger desensitization of adrenergic receptors, as we/1 as of severa/ other biological signaling systems. The desensitization may happen by the following mechanisms: phosphorylation by specific kinase, phosphorylation by effectory kinase, endocitosis of the receptor; down-regulation, by phosphorylation of the G protein subunity and, final/y, by reduction of the RNA-messenger intracellular transcription. The physio/ogic integrity of adrenergic receptors is dependent on an ideal environment, which may, however, undergo alterations due to diverse factors, such as hypercho/esterolemia and exposure to free radicais.
Downloads
References
Strosberg D. Biotechnology of beta-adrenergic receptors. Pathol Biol. 1992; 40(8):767-72.
Kurose H, lsogaya M, Kikkawa H, Nagao T Domains of beta1 and beta2 adrenergic receptors to bind subtype selective agonists. Life Sei. 1998; 62 (17-18):1513-7.
Yu SS, Lefkowitz RJ, Hausdorff WP. Beta-adrenergic receptor sequestration. A potencial mechanism of receptor resensitization. J Biol Chem. 1983; 268: 337-41.
Johnson M. The b-Adrenoceptor. Am J Respir Crit Méd. 1998; 158:S146-S53.
Strader CD, Sigal IS, Candelore MR, Hill WS, Dixon RAF. Conserved aspartic residues 9 and 113 of the-adrenergic receptor have different roles in receptor function. J Biol Chem. 1989; 264:13572-80.
Nagamoto T, Koike K. Minireview: Recent advances in structure, binding sites with ligants and pharmacological function of -sdrenoceptors obtained by molecular biology and molecular modeling. Life Sei. 2000; 66:2419-26.
Blin N, Federici C, Koscielniak T, Strosberg AD. Predictive quantitative structure-activity relationships (QSAR) analysis of beta 3-adrenergic ligands. Drug Des Discov. 1995; 12(4):297-311.
Gauthier C, Tavernier G, Charpentier F, Langin D, Le Marec H. Functional beta3-adrenoceptor in the human heart. J Clin lnvest. 1996; 98(2):556.
Kaumann AJ. CGP 12177-induced increase of human atrial contraction through a putative third beta-adrenoceptor. Br J Pharmacol. 1996; 117(1):93-8.
Strosberg AD. Structure and function of the 3-adrenergic receptor. Ann Rev Pharmacol Toxicol. 1997; 37:421-50.
Graham RM, Perez DM, Hwa J, Piascik MT a-adrenergic receptor subtypes: Molecular structure, function and signaling. Am Heart Assoe. 1996; 78:737-49.
Dowell SJ, Brown AJ. Yeast assays for G-protein-coupled receptors. Receptors Channels. 2002; 8(5-6):343-52.
Kost T, Kadwell S, Watson M, Clay W, Goetz A, King H, et ai. Contrai of a1-adrenergic receptor expression by NH2 terminal extracellular domain sequences: pharmacology of adrenoceptors. ln: Satellite Symposium of the 12th UIPHAR Congress; 1994 July 21-3; King of Prussia, Pa.
Garcia-Sainz JA. a1-adrenergic caion: Receptor subtypes, signal transduction and regulation. Cell Signal. 1993; 5:539-47.
Scheer A, Fanelli F, Costa T, De Benedetti PG, Cotecchia S. The activation process of the alpha 1B-adrenergic receptor: Potential role of protonation and hydrophobicity of a highly conserved aspartate. Proc Natl Acad Sei USA 1997; 94(3):808-13.
Hwa J, Gperez DM. ldentification of criticai determinants of a, adrenergic receptor subtype selective agonist binding. J Biol Chem. 1995; 270:(23)189-95.
Zhang J, Ferguson SSG, Barak LS, Menárd L, Caron MG. Dynamin and -arrestin reveal distinct mechanisms for G-protein-coupled receptor internalization. J Biol Chem. 1996; 271:18302-5.
Murkherjee S, Palczewski K, Gurevic V, Benovic JL, Banga JP, Hunzicker-Dunn M. A direct role of arrestins in desensitization of the lutheinizing hormone / choriogonadotrapin receptor in porcine ovarian follicular membranes. Proc Natl Acad Sei USA. 1999; 96:493-8.
Benovic JL, Shorr RGL, Caron MG, Lefkowitz RJ. The mammalian beta 2-adrenergic receptor: Purification and characterization. Biochemstry. 1984; 23:4519-25.
Dixon RA, Kobilka BK, Strader DJ, Benovic JL, Dohlman HG, Frielle T, et ai. - Cloning of the gene and cDNA for mammalian beta-adrenergic receptor and homology with rhodopsin. Nature. 1986; 321(6065):75-9.
Lohse JM. Molecular mechanisms of membrane receptor desensitization. Bichem Biophys Acta. 1993; 1179:171-88.
Attramada H, Arriza JL, Aoki C, Dawson TM, Codina J, Kawatra MM, et ai. Beta-arrestin2, a novel member of the arrestin/beta-arrestin gene family. Biachem. 1992; 267:17882-90.
Roth N, Campbell PT, Caran MG, Lefkowitz RJ, Lohse MJ. Comparative rates of desensitization of beta-adrenergic receptors by the beta-adrenergic receptor kinase and the cyclic AMP-dependent protein kinase. Proc Natl Acad Sei USA. 1991; 88:6201-4.
Strosberg AD. Structure, function, and regulation of the three beta-adrenergic receptors. Obes Res. 1995; (3 Suppl 4):501S-5S.
Clark RB, Friedman J, Dixon RAF, Strader CD. ldentification of a specific site required for rapid heterologous desensitization of the beta-adrenergic receptor by cAMP-dependent pratein kinase. Mol Pharmacol. 1989; 36:343-8.
Okamoto T, Murayama Y, Hayashi Y, Ynagaki M, Ogata E, Nishimoto 1. ldentification of a Gs activator region of the beta 2-adrenergic receptor that is autoregulated via pratein kinase A-dependent phosphorylation. Cell. 1992; 67:723-30.
Pitcher J, Lohse MJ, Codina J, Caron MG, Lefkowitz RJ. Desensitization of the isolated beta 2-adrenergic receptor by beta-adrenergic receptor kinase, cAMP dependent protein kinase, and protein kinase C occurs via distinct molecular mechanisms. Biochemstry. 1992; 31 3193-7.
Silbley DR, Strasser RH, Benovic JL, Daniel K, Lefkowitz RJ. Phosphorylation/dephosphorylation of the beta-adrenergic receptor regulates its functional coupling to adenylate cyclase and subcellular distribution. Proc Natl Acad Sei USA. 1986; 83: 9408-12.
Nantel F, Bonin H, Emorine LJ, Zilberfarb V, Strosberg AD, Bouvier M, Marullo S. The human beta 3-adrenergic receptor is resistant to short term agonist-promoted desensitization. Mol Pharmacol. 1993; 43:548-55.
Eason MG, Liggett SB. Subtype-selective desensitization of alpha 2-adrenergic receptors. Different mechanisms contrai short and long term agonist-pramoted desensitization of alpha 2C 1O, alpha 2C4, and alpha 2C2. J Biol Chem. 1992; 267:25473-9.
Collins S, Bouvier M, Lohse MJ, Benovic JL, Caron MG, Lefkowitz RJ. Mechanisms involved in adrenergic receptor desensitization. Biachem Soe Trans. 1990; 18:541-4.
Bouvier M, Collins S, O'Dowd BF, Campbell PT, De-Blasi A, Kobilka BK, et ai. Two distinct pathways for cAMP-mediated down-regulation of the beta 2-adrenergic receptor. Phosphorylation of the receptor and regulation of its mRNA levei. J Biol Chem. 1989; 264 16786-92.
Valiquette M, Bonin H, Hhnatowich M, Caron MG, Lefkowitz RJ, Bouvier M. lnvolvement of tyrasine residues located in the carboxyl tail of the human beta 2-adrenergic receptor in agonist-induced down-regulation of the receptor. Proc Natl Acad Sei USA. 1990; 87:5089-93,
Von Zastrow M, Kobilka BK. Antagonist-dependent and independent steps in the mechanism of adrenergic receptor internalization. J Biol Chem. 1994; 269(28):18448-52.
Hadcock JR, Wang HY, Malbon CC. Agonist-induced destabilization of beta-adrenergic receptor mRNA. Attenuation of glucocorticoid-induced up-regulation of beta-adrenergic receptors. J Biol Chem. 1989; 264(33):19928-33.
Bertin B, Jockers R, Strosberg AD, Marullo S. Activation of a beta 2-adrenergic receptor/Gs alpha fusion protein elicits a desensitization-resistant cAMP signal capable of inhibiting proliferation of two cancer cell lines. Receptors Channels. 1997; 5(1):41-51.
Clark R. Regulation of cellular signal transduction pathways by desensitization and amplification. Trends Cell Biol. 1994; 4(12):442-3.
Hausdorff WP, Pitcher JÁ, Luttrell DK, Linder ME, Kurose H, Parsons SJ, et ai. Tyrosine phosphorylation of G protein alpha subunits by pp60c-src. Prac Natl Acad Sei USA. 1992; 89(13):5720-4.
Eason MG, LIGGETT SB. Subtype-selective desensitization of alpha 2-adrenergic receptors. Different mechanisms contrai short and long term agonist-pramoted desensitization of alpha 2C 1O, alpha 2C4, and alpha 2C2. J Biol Chem. 1992; 267:25473-9.