血管活性肠肽
受体
分泌素
环化酶
腺苷酸激酶
腺苷酸环化酶
垂体腺苷酸环化酶激活肽
分泌素家族
垂体前叶
内分泌学
神经肽
内科学
激素
生物
生物化学
胰腺
医学
作者
David Vaudry,Anthony Falluel‐Morel,Steve Bourgault,Magali Basille,Delphine Burel,Olivier Wurtz,Alain Fournier,Bkc Chow,Hitoshi Hashimoto,Ludovic Galas,Hubert Vaudry
出处
期刊:Pharmacological Reviews
[American Society for Pharmacology and Experimental Therapeutics]
日期:2009-09-01
卷期号:61 (3): 283-357
被引量:1057
标识
DOI:10.1124/pr.109.001370
摘要
Pituitary adenylate cyclase-activating polypeptide (PACAP) is a 38-amino acid C-terminally α-amidated peptide that was first isolated 20 years ago from an ovine hypothalamic extract on the basis of its ability to stimulate cAMP formation in anterior pituitary cells (Miyata et al., 1989. PACAP belongs to the vasoactive intestinal polypeptide (VIP)-secretin-growth hormone-releasing hormone-glucagon superfamily. The sequence of PACAP has been remarkably well conserved during evolution from protochordates to mammals, suggesting that PACAP is involved in the regulation of important biological functions. PACAP is widely distributed in the brain and peripheral organs, notably in the endocrine pancreas, gonads, respiratory and urogenital tracts. Characterization of the PACAP precursor has revealed the existence of a PACAP-related peptide, the activity of which remains unknown. Two types of PACAP binding sites have been characterized: type I binding sites exhibit a high affinity for PACAP and a much lower affinity for VIP, whereas type II binding sites have similar affinity for PACAP and VIP. Molecular cloning of PACAP receptors has shown the existence of three distinct receptor subtypes: the PACAP-specific PAC1-R, which is coupled to several transduction systems, and the PACAP/VIP-indifferent VPAC1-R and VPAC2-R, which are primarily coupled to adenylyl cyclase. PAC1-Rs are particularly abundant in the brain, the pituitary and the adrenal gland, whereas VPAC receptors are expressed mainly in lung, liver, and testis. The development of transgenic animal models and specific PACAP receptor ligands has strongly contributed to deciphering the various actions of PACAP. Consistent with the wide distribution of PACAP and its receptors, the peptide has now been shown to exert a large array of pharmacological effects and biological functions. The present report reviews the current knowledge concerning the pleiotropic actions of PACAP and discusses its possible use for future therapeutic applications.
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