Literature DB >> 8631814

There are three distinct forms of bombesin. Identification of [Leu13]bombesin, [Phe13]bombesin, and [Ser3,Arg10,Phe13]bombesin in the frog Bombina orientalis.

S R Nagalla1, B J Barry, A M Falick, B W Gibson, J E Taylor, J Z Dong, E R Spindel.   

Abstract

Amphibian bombesin is the prototypic peptide that defines the bombesin-like peptide family. In this paper we show that in the frog Bombina orientalis, there are actually 3 distinct forms of bombesin, and each of these peptides is an agonist with differing affinities for the known bombesin receptors. Oligonucleotides complementary to the 5'- and 3'-untranslated regions of the bombesin mRNA were used to amplify bombesin-related cDNAs from the skin, brain, and gut of B. orientalis. Three classes of cDNAs were found. One class encoded the previously characterized form of bombesin which has a Leu at position 13 ([Leu13]bombesin). The other two classes, respectively, encoded new bombesin-like peptides which we have designated as [Phe13]bombesin and [Ser3,Arg10,Phe13]bombesin ([SAP]bombesin). The existence of [SAP]bombesin in skin was confirmed by tandem mass spectrometry. Polymerase chain reaction analysis of genomic DNA showed the mRNAs for [Leu13]bombesin, [Phe13]bombesin, and [SAP]bombesin most likely arise from separate genes. Polymerase chain reaction analysis showed different patterns of tissue-specific expression for each form. [Leu13]Bombesin and [SAP]bombesin were predominantly expressed in skin, brain, and gut; [Phe13]bombesin was expressed only in brain, and [Leu13]bombesin predominated in oocytes. [SAP]Bombesin contained a cleavage site between residues 4 and 5, which if used would yield the peptide [SAP]bombesin(5-14) which has the sequence [Gln3,Arg6]neuromedin B. Thus a frog homolog of NMB could derive from the [SAP]bombesin prohormone. [Phe13]Bombesin, [SAP]bombesin, and [SAP]bombesin(5-14) were synthesized and their affinities for the mammalian bombesin-like peptide (GRP and NMB) receptors determined. These peptides acted as agonists for the GRP and NMB receptors, with relative potencies for the GRP receptor of [Leu13]bombesin > [Phe13]bombesin > [SAP]bombesin(5-14) > [SAP]bombesin and for the NMB receptor of [Phe13]bombesin > [SAP]bombesin(5-14) > [Leu13]bombesin > [SAP]bombesin. None of these peptides demonstrated high affinity binding for the BRS-3 receptor. The different receptor affinities and tissue distribution of these peptides suggests distinct physiologic roles and raises the possibility of as yet uncharacterized mammalian homologs of these new amphibian peptides.

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Year:  1996        PMID: 8631814     DOI: 10.1074/jbc.271.13.7731

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


  10 in total

1.  A plant-specific protein essential for blue-light-induced chloroplast movements.

Authors:  Stacy L DeBlasio; Darron L Luesse; Roger P Hangarter
Journal:  Plant Physiol       Date:  2005-08-19       Impact factor: 8.340

2.  Visual discrimination learning in the fire-bellied toad Bombina orientalis.

Authors:  Sarah E M Jenkin; Frédéric Laberge
Journal:  Learn Behav       Date:  2010-11       Impact factor: 1.986

Review 3.  Insights into bombesin receptors and ligands: Highlighting recent advances.

Authors:  Irene Ramos-Álvarez; Paola Moreno; Samuel A Mantey; Taichi Nakamura; Bernardo Nuche-Berenguer; Terry W Moody; David H Coy; Robert T Jensen
Journal:  Peptides       Date:  2015-05-11       Impact factor: 3.750

4.  Identification of a family of low-affinity insulin-like growth factor binding proteins (IGFBPs): characterization of connective tissue growth factor as a member of the IGFBP superfamily.

Authors:  H S Kim; S R Nagalla; Y Oh; E Wilson; C T Roberts; R G Rosenfeld
Journal:  Proc Natl Acad Sci U S A       Date:  1997-11-25       Impact factor: 11.205

5.  Rhodamine-marked bombesin: a novel means for prostate cancer fluorescence imaging.

Authors:  Alexander Sturzu; Sumbla Sheikh; Hartmut Echner; Thomas Nägele; Martin Deeg; Bushra Amin; Christian Schwentner; Marius Horger; Ulrike Ernemann; Stefan Heckl
Journal:  Invest New Drugs       Date:  2013-06-01       Impact factor: 3.850

Review 6.  International Union of Pharmacology. LXVIII. Mammalian bombesin receptors: nomenclature, distribution, pharmacology, signaling, and functions in normal and disease states.

Authors:  R T Jensen; J F Battey; E R Spindel; R V Benya
Journal:  Pharmacol Rev       Date:  2007-11-30       Impact factor: 25.468

7.  PEGylation, increasing specific activity and multiple dosing as strategies to improve the risk-benefit profile of targeted radionuclide therapy with 177Lu-DOTA-bombesin analogues.

Authors:  Simone Däpp; Cristina Müller; Elisa García Garayoa; Peter Bläuenstein; Veronique Maes; Luc Brans; Dirk A Tourwé; Roger Schibli
Journal:  EJNMMI Res       Date:  2012-06-09       Impact factor: 3.138

8.  A Hylarana latouchii Skin Secretion-Derived Novel Bombesin-Related Pentadecapeptide (Ranatensin-HLa) Evoke Myotropic Effects on the in vitro Rat Smooth Muscles.

Authors:  Yan Lin; Nan Hu; Haoyang He; Chengbang Ma; Mei Zhou; Lei Wang; Tianbao Chen
Journal:  Toxins (Basel)       Date:  2019-04-05       Impact factor: 4.546

9.  The gastrin-releasing peptide/bombesin system revisited by a reverse-evolutionary study considering Xenopus.

Authors:  Asuka Hirooka; Mayuko Hamada; Daiki Fujiyama; Keiko Takanami; Yasuhisa Kobayashi; Takumi Oti; Yukitoshi Katayama; Tatsuya Sakamoto; Hirotaka Sakamoto
Journal:  Sci Rep       Date:  2021-06-25       Impact factor: 4.379

10.  Ranatensin-HL: A Bombesin-Related Tridecapeptide from the Skin Secretion of the Broad-Folded Frog, Hylarana latouchii.

Authors:  Yan Lin; Tianbao Chen; Mei Zhou; Lei Wang; Songkun Su; Chris Shaw
Journal:  Molecules       Date:  2017-07-04       Impact factor: 4.411

  10 in total

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