D. Alexandre, Y. Anouar, S. Jegou, A. Fournier, and H. Vaudry, A cloned frog vasoactive intestinal polypeptide/pituitary adenylate cyclase-activating polypeptide receptor exhibits pharmacological and tissue distribution characteristics of both VPAC1 and VPAC2 receptors in mammals, Endocrinology, vol.140, pp.1285-1293, 1999.

D. Alexandre, Y. Anouar, S. Jegou, A. Fournier, and H. Vaudry, Molecular cloning, mRNA distribution and pharmacological characterization of a VIP/PACAP receptor in the frog Rana ridibunda, Ann. N.Y. Acad. Sci, vol.921, pp.300-303, 2000.

R. Apa, A. Lanzone, M. Mastrandrea, F. Miceli, F. D. De et al., Control of human luteal steroidogenesis: role of growth hormone-releasing hormone, vasoactive intestinal peptide, and pituitary adenylate cyclase-activating peptide, Fertil. Steril, vol.68, pp.1097-1102, 1997.

R. Apa, A. Lanzone, M. Mastrandrea, F. Miceli, E. Macchione et al., EVect of pituitary adenylate cyclase-activating peptide on meiotic maturation in follicleenclosed, cumulus-enclosed, and denuded rat oocytes, Biol. Reprod, vol.57, pp.1074-1079, 1997.

A. Arimura and S. Shioda, Pituitary adenylate cyclase activating polypeptide (PACAP) and its receptors: neuroendocrine and endocrine interaction, Front. Neuroendocrin, vol.16, pp.53-88, 1995.

M. Basille, B. J. Gonzalez, L. Desrues, M. Demas, A. Fournier et al., Pituitary adenylate cyclase-activating polypeptide (PACAP) stimulates adenylyl cyclase and phospholipase C activity in rat cerebellar neuroblasts, J. Neurochem, vol.65, pp.1318-1324, 1995.

A. Cauvin, L. Buscail, P. Gourlet, N. P. De, D. Gossen et al., The novel VIP-like hypothalamic polypeptide PACAP interacts with high aYnity receptors in the human neuroblastoma cell line NB-OK, Peptides, vol.11, pp.773-777, 1990.

K. W. Chan, K. L. Yu, J. Rivier, and B. K. Chow, IdentiWcation and characterization of a receptor from goldWsh speciWc for a teleost growth hormone-releasing hormone-like peptide, Neuroendocrinology, vol.68, pp.44-56, 1998.

J. P. Chang, J. D. Johnson, G. F. Van, C. J. Wong, W. K. Yunker et al., Signal transduction mechanisms mediating secretion in goldWsh gonadotropes and somatotropes, Biochem. Cell Biol, vol.78, pp.139-153, 2000.

B. K. Chow, T. W. Moon, R. L. Hoo, C. M. Yeung, M. Muller et al., IdentiWcation and characterization of a glucagon receptor from the goldWsh Carassius auratus: implications for the evolution of the ligand speciWcity of glucagon receptors in vertebrates, Endocrinology, vol.145, pp.3273-3288, 2004.

B. K. Chow, T. T. Yuen, and K. W. Chan, Molecular evolution of vertebrate VIP receptors and functional characterization of a VIP receptor from goldWsh Carassius auratus, Gen. Comp Endocr, vol.105, pp.176-185, 1997.

P. De-girolamo, N. Arcamone, A. Rosica, and G. Gargiulo, PACAP (pituitary adenylate cyclase-activating peptide)-like immunoreactivity in the gill arch of the goldWsh, Carassius auratus: distribution and comparison with VIP, Cell Tissue Res, vol.293, issue.3, pp.567-571, 1998.

E. A. Fradinger, J. A. Tello, J. E. Rivier, and N. M. Sherwood, Characterization of four receptor cDNAs: PAC1, VPAC1, a novel PAC1 and a partial GHRH in zebraWsh, Mol. Cell Endocrinol, vol.231, pp.49-63, 2005.

S. Gras, J. Hannibal, and J. Fahrenkrug, Pituitary adenylate cyclaseactivating polypeptide is an auto/paracrine stimulator of acute progesterone accumulation and subsequent luteinization in cultured periovulatory granulosa/lutein cells, Endocrinology, vol.140, pp.2199-2205, 1999.

S. Gras, C. Hedetoft, S. H. Pedersen, and J. Fahrenkrug, Pituitary adenylate cyclase-activating peptide stimulates acute progesterone produc-ARTICLE IN PRESS tion in rat granulosa/Lutein cells via two receptor subtypes, Biol. Reprod, vol.63, pp.206-212, 2000.

H. Hashimoto, T. Ishihara, R. Shigemoto, K. Mori, and S. Nagata, Molecular cloning and tissue distribution of a receptor for pituitary adenylate cyclase-activating polypeptide, Neuron, vol.11, pp.333-342, 1993.

M. Hosoya, H. Onda, K. Ogi, Y. Masuda, Y. Miyamoto et al., Molecular cloning and functional expression of rat cDNAs encoding the receptor for pituitary adenylate cyclase activating polypeptide (PACAP), Biochem. Biophys. Res. Commun, vol.194, pp.133-143, 1993.

C. Ko and O. K. Park-sarge, Progesterone receptor activation mediates LH-induced type-I pituitary adenylate cyclase activating polypeptide receptor (PAC(1)) gene expression in rat granulosa cells, Biochem. Biophys. Res. Commun, vol.277, pp.270-279, 2000.

B. Koch and B. Lutz-bucher, Pituitary adenylate cyclase-activating polypeptide (PACAP) stimulates cyclic AMP formation as well as peptide output of cultured pituitary melanotrophs and AtT-20 corticotrophs, Regul. Pept, vol.38, pp.45-53, 1992.

A. Miyata, A. Arimura, R. R. Dahl, N. Minamino, A. Uehara et al., Isolation of a novel 38 residue-hypothalamic polypeptide which stimulates adenylate cyclase in pituitary cells, Biochem. Biophys. Res. Commun, vol.164, pp.567-574, 1989.

A. Miyata, L. Jiang, R. D. Dahl, C. Kitada, K. Kubo et al., Isolation of a neuropeptide corresponding to the N-terminal 27 residues of the pituitary adenylate cyclase activating polypeptide with 38 residues (PACAP38), Biochem. Biophys. Res. Commun, vol.170, pp.643-648, 1990.

M. Montero, L. Yon, S. Kikuyama, S. Dufour, and H. Vaudry, Molecular evolution of the growth hormone-releasing hormone/pituitary adenylate cyclase-activating polypeptide gene family. Functional implication in the regulation of growth hormone secretion, J. Mol. Endocrinol, vol.25, pp.157-168, 2000.

M. Montero, L. Yon, K. Rousseau, A. Arimura, A. Fournier et al., Distribution, characterization, and growth hormonereleasing activity of pituitary adenylate cyclase-activating polypeptide in the European eel, Anguilla anguilla. Endocrinology, vol.139, pp.4300-4310, 1998.

J. A. Morrow, E. M. Lutz, K. M. West, G. Fink, and A. J. Harmar, Molecular cloning and expression of a cDNA encoding a receptor for pituitary adenylate cyclase activating polypeptide (PACAP), FEBS Lett, vol.329, pp.99-105, 1993.

K. Ogi, Y. Miyamoto, Y. Masuda, Y. Habata, M. Hosoya et al., Molecular cloning and functional expression of a cDNA encoding a human pituitary adenylate cyclase activating polypeptide receptor, Biochem. Biophys. Res. Commun, vol.196, pp.1511-1521, 1993.

C. Olsson and S. Holmgren, PACAP inhibits spontaneous contractions in the intestine of the Atlantic cod, Gadus morhua, Ann. N.Y. Acad. Sci, vol.865, pp.512-514, 1998.

C. Olsson and S. Holmgren, The control of gut motility, Comp. Biochem. Physiol A Mol. Integr. Physiol, vol.128, pp.481-503, 2001.

K. Peeters, H. H. Gerets, K. Princen, and F. Vandesande, Molecular cloning and expression of a chicken pituitary adenylate cyclase-activating polypeptide receptor, Brain Res. Mol. Brain Res, vol.71, pp.244-255, 1999.

J. R. Pisegna and S. A. Wank, Cloning and characterization of the signal transduction of four splice variants of the human pituitary adenylate cyclase activating polypeptide receptor. Evidence for dual coupling to adenylate cyclase and phospholipase C, J. Biol. Chem, vol.271, pp.17267-17274, 1996.

S. R. Rawlings and M. Hezareh, Pituitary adenylate cyclase-activating polypeptide (PACAP) and PACAP/vasoactive intestinal polypeptide receptors: actions on the anterior pituitary gland, Endocr. Rev, vol.17, pp.4-29, 1996.

B. D. Shivers, T. J. Gorcs, P. E. Gottschall, and A. Arimura, Two high aYnity binding sites for pituitary adenylate cyclase-activating polypeptide have diVerent tissue distributions, Endocrinology, vol.128, pp.3055-3065, 1991.

D. Spengler, C. Waeber, C. Pantaloni, F. Holsboer, J. Bockaert et al., DiVerential signal transduction by Wve splice variants of the PACAP receptor, Nature, vol.365, pp.170-175, 1993.

M. Svoboda, M. Tastenoy, E. Ciccarelli, M. Stievenart, and J. Christophe, Cloning of a splice variant of the pituitary adenylate cyclase-activating polypeptide (PACAP) type I receptor, Biochem. Biophys. Res. Commun, vol.195, pp.881-888, 1993.

D. L. Tse, B. K. Chow, C. B. Chan, L. T. Lee, and C. H. Cheng, Molecular cloning and expression studies of a prolactin receptor in goldWsh (Carassius auratus), Life Sci, vol.66, pp.593-605, 2000.

D. L. Tse, R. T. Pang, A. O. Wong, S. M. Chan, H. Vaudry et al., IdentiWcation of a potential receptor for both peptide histidine isoleucine and peptide histidine valine, Endocrinology, vol.143, pp.1327-1336, 2002.

D. Vaudry, B. J. Gonzalez, M. Basille, L. Yon, A. Fournier et al., Pituitary adenylate cyclase-activating polypeptide and its receptors: from structure to functions, Pharmacol Rev, vol.52, issue.2, pp.269-324, 2000.
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A. O. Wong, M. Y. Leung, W. L. Shea, L. Y. Tse, J. P. Chang et al., Hypophysiotropic action of pituitary adenylate cyclaseactivating polypeptide (PACAP) in the goldWsh: immunohistochemical demonstration of PACAP in the pituitary, PACAP stimulation of growth hormone release from pituitary cells, and molecular cloning of pituitary type I PACAP receptor, Endocrinology, vol.139, pp.3465-3479, 1998.

A. O. Wong, W. S. Li, E. K. Lee, M. Y. Leung, L. Y. Tse et al., Pituitary adenylate cyclase activating polypeptide as a novel hypophysiotropic factor in Wsh, Biochem. Cell Biol, vol.78, pp.329-343, 2000.

C. M. Yeung, S. Mojsov, P. Y. Mok, and B. K. Chow, Isolation and structure-function studies of a glucagon-like peptide 1 receptor from goldWsh Carassius auratus: identiWcation of three charged residues in extracellular domains critical for receptor function, Endocrinology, vol.143, pp.4646-4654, 2002.

W. H. Yung, P. S. Leung, S. S. Ng, J. Zhang, S. C. Chan et al., Secretin facilitates GABA transmission in the cerebellum, J. Neurosci, vol.21, pp.7063-7068, 2001.