Literature DB >> 8910373

Molecular characterization of a second mouse pancreatic polypeptide receptor and its inactivated human homologue.

P Gregor1, Y Feng, L B DeCarr, L J Cornfield, M L McCaleb.   

Abstract

The family of mammalian neuropeptide Y (NPY)/peptide YY (PYY)/pancreatic polypeptide (PP) receptors comprises several G protein-coupled receptors, i.e. Y1, Y2, and Y4/PP1. We now report cloning of a novel member of this family named PP2. The coding region of the mouse PP2 gene reveals no introns and predicts a seven transmembrane domain (TM) receptor of 371 amino acids. Percent identities of the mouse PP2 to mouse Y1, mouse Y4/PP1 and human Y2 receptors are 53, 42, and 31, respectively. The mouse PP2 receptor expressed in COS cells binds rat 125I-PP with high affinity, i.e. IC50 = 65 pM. Pharmacological characterization of 125I-PP binding shows a rank order of potency of PP >> PYY >/= NPY, which is similar to that of the mouse Y4/PP1 receptor. Mouse PP2 transcripts were not detectable by Northern analysis in adult tissues and in 11-, 15-, and 17-day-old embryos. However, a 9.8-kb PP2 transcript was detectable in 7-day-old mouse embryo, i.e. prior to the organogenesis of pancreas and the onset of PP production. We have also cloned the human homologue of PP2, which is a single copy gene and maps to human chromosome 5q31. Surprisingly, the human PP2 cDNAs and gene sequences display a single base deletion in the coding region. This frameshifting mutation predicts a truncated receptor of 290 amino acids without TM7. Transfection of COS-7 cells with several different human PP2 expression constructs failed to confirm any specific binding of 125I-PP, 125I-PYY, or 125I-NPY to cell membranes. These data suggest that in mouse there are at least two PP receptors, Y4/PP1 and PP2, whereas in humans, PP2 is either functionally inactive or it has acquired a PP-independent function.

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Year:  1996        PMID: 8910373     DOI: 10.1074/jbc.271.44.27776

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  18 in total

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Authors:  Y Dumont; R Quirion
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2.  BIIE0246, a potent and highly selective non-peptide neuropeptide Y Y(2) receptor antagonist.

Authors:  Y Dumont; A Cadieux; H Doods; L H Pheng; R Abounader; E Hamel; D Jacques; D Regoli; R Quirion
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3.  Novel neuropeptide Y Y2-like receptor subtype in zebrafish and frogs supports early vertebrate chromosome duplications.

Authors:  R Fredriksson; E T Larson; Y-L Yan; J-H Postlethwait; D Larhammar
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Review 4.  Tobacco addiction and the dysregulation of brain stress systems.

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Journal:  Br J Pharmacol       Date:  2011-07       Impact factor: 8.739

Review 6.  The NPY system and its neural and neuroendocrine regulation of bone.

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7.  NPY receptor subtype in the rabbit isolated ileum.

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8.  The regulation of veratridine-stimulated electrogenic ion transport in mouse colon by neuropeptide Y (NPY), Y1 and Y2 receptors.

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Journal:  Br J Pharmacol       Date:  2005-11       Impact factor: 8.739

9.  High molecular weight PEGylation of human pancreatic polypeptide at position 22 improves stability and reduces food intake in mice.

Authors:  V Thieme; N Jolly; A N Madsen; K Bellmann-Sickert; T W Schwartz; B Holst; H M Cox; A G Beck-Sickinger
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10.  Functional consequences of neuropeptide Y Y 2 receptor knockout and Y2 antagonism in mouse and human colonic tissues.

Authors:  Niall P Hyland; Frida Sjöberg; Iain R Tough; Herbert Herzog; Helen M Cox
Journal:  Br J Pharmacol       Date:  2003-06       Impact factor: 8.739

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