The Origin and Function of the Pituitary Adenylate Cyclase-Activating Polypeptide (PACAP)/Glucagon Superfamily*
Происхождение и функции суперсемейства гипофизарного аденилатциклаза-активирующего полипептида (PACAP) и глюкагона*
2000-12-01
SCID: 54.1/24csq8yn
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PACAP/glucagon superfamilycAMP signalinggene duplicationpituitary adenylate cyclase-activating polypeptideseven-transmembrane receptors
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Abstract (AI)
The pituitary adenylate cyclase-activating polypeptide (PACAP)/ glucagon superfamily includes nine hormones in humans that are related by structure, distribution (especially the brain and gut), function (often by activation of cAMP), and receptors (a subset of seven-transmembrane receptors). The nine hormones include glucagon, glucagon-like peptide-1 (GLP-1), GLP-2, glucose-dependent insulinotropic polypeptide (GIP), GH-releasing hormone (GRF), peptide histidine-methionine (PHM), PACAP, secretin, and vasoactive intestinal polypeptide (VIP). The origin of the ancestral superfamily members is at least as old as the invertebrates; the most ancient and tightly conserved members are PACAP and glucagon. Evidence to date suggests the superfamily began with a gene or exon duplication and then continued to diverge with some gene duplications in vertebrates. The function of PACAP is considered in detail because it is newly (1989) discovered; it is tightly conserved (96% over 700 million years); and it is probably the ancestral molecule. The diverse functions of PACAP include regulation of proliferation, differentiation, and apoptosis in some cell populations. In addition, PACAP regulates metabolism and the cardiovascular, endocrine, and immune systems, although the physiological event(s) that coordinates PACAP responses remains to be identified.
Key Findings
1
PACAP and glucagon are the most ancient and conserved members; PACAP is proposed as a likely ancestral molecule and retains 96% conservation over 700 million years.
2
PACAP regulates cellular proliferation, differentiation, and apoptosis, as well as metabolic, cardiovascular, endocrine, and immune functions, but the coordinating physiological event remains unknown.
3
The human PACAP/glucagon superfamily comprises nine structurally related hormones distributed mainly in the brain and gut.
4
The superfamily originated at least in invertebrates, likely through ancestral gene or exon duplication followed by divergence and vertebrate gene duplications.
5
These hormones commonly signal through seven-transmembrane receptors and often activate cyclic AMP pathways.
Research Object
The human PACAP/glucagon hormone superfamily, including PACAP and related peptide hormones
Research Subject
The evolutionary origin, structural conservation, distribution, receptor signaling, and diverse physiological functions of the PACAP/glucagon superfamily, especially PACAP
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2000-12-01
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