Literature DB >> 9609684

The structure of the monomeric porcine odorant binding protein sheds light on the domain swapping mechanism.

S Spinelli1, R Ramoni, S Grolli, J Bonicel, C Cambillau, M Tegoni.   

Abstract

The X-ray structure of the porcine odorant binding protein (OBPp) was determined at 2.25 A resolution. This lipocalin is a monomer and is devoid of naturally occurring bound ligand, contrary to what was observed in the case of bovine OBP [Tegoni, M., et al. (1996) Nat. Struct. Biol. 3, 863-867; Bianchet, M. A., et al. (1996) Nat. Struct. Biol. 3, 934-939]. In this latter protein, a dimer without any disulfide bridges, domain swapping was found to occur between the beta- and alpha-domains. A single Gly (121) insertion was found in OBPp when it was compared to OBPb, which may prevent domain swapping from taking place. The presence of a disulfide bridge between the OBPp beta- and alpha-domains (cysteines 63 and 155) may lock the resulting fold in a nonswapped monomeric conformation. Comparisons with other OBPs indicate that the two cysteines involved in the OBPp disulfide bridge are conserved in the sequence, suggesting that OBPp may be considered a prototypic OBP fold, and not OBPb.

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Year:  1998        PMID: 9609684     DOI: 10.1021/bi980179e

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  25 in total

1.  Cloning, post-translational modifications, heterologous expression and ligand-binding of boar salivary lipocalin.

Authors:  D Loebel; A Scaloni; S Paolini; C Fini; L Ferrara; H Breer; P Pelosi
Journal:  Biochem J       Date:  2000-09-01       Impact factor: 3.857

2.  Effect of 1-aminoanthracene (1-AMA) binding on the structure of three lipocalin proteins, the dimeric β lactoglobulin, the dimeric odorant binding protein and the monomeric α1-acid glycoprotein. Fluorescence spectra and lifetimes studies.

Authors:  Daniel Kmiecik; Jihad René Albani
Journal:  J Fluoresc       Date:  2010-03-30       Impact factor: 2.217

3.  Binding specificity of recombinant odorant-binding protein isoforms is driven by phosphorylation.

Authors:  Fanny Brimau; Jean-Paul Cornard; Chrystelle Le Danvic; Philippe Lagant; Gerard Vergoten; Denise Grebert; Edith Pajot; Patricia Nagnan-Le Meillour
Journal:  J Chem Ecol       Date:  2010-06-30       Impact factor: 2.626

4.  The membrane bound bacterial lipocalin Blc is a functional dimer with binding preference for lysophospholipids.

Authors:  Valérie Campanacci; Russell E Bishop; Stéphanie Blangy; Mariella Tegoni; Christian Cambillau
Journal:  FEBS Lett       Date:  2006-08-10       Impact factor: 4.124

5.  Energy transfer studies between Trp residues of three lipocalin proteins family, α1-acid glycoprotein, (orosomucoid), β-lactoglobulin and porcine odorant binding protein and the fluorescent probe, 1-aminoanthracene (1-AMA).

Authors:  Jihad R Albani; Loïc Bretesche; Julie Vogelaer; Daniel Kmiecik
Journal:  J Fluoresc       Date:  2015-01-18       Impact factor: 2.217

6.  Control of domain swapping in bovine odorant-binding protein.

Authors:  Roberto Ramoni; Florence Vincent; Alison E Ashcroft; Paolo Accornero; Stefano Grolli; Christel Valencia; Mariella Tegoni; Christian Cambillau
Journal:  Biochem J       Date:  2002-08-01       Impact factor: 3.857

7.  Reverse chemical ecology: Olfactory proteins from the giant panda and their interactions with putative pheromones and bamboo volatiles.

Authors:  Jiao Zhu; Simona Arena; Silvia Spinelli; Dingzhen Liu; Guiquan Zhang; Rongping Wei; Christian Cambillau; Andrea Scaloni; Guirong Wang; Paolo Pelosi
Journal:  Proc Natl Acad Sci U S A       Date:  2017-10-23       Impact factor: 11.205

8.  Characterization of a deswapped triple mutant bovine odorant binding protein.

Authors:  Eugenia Polverini; Paolo Lardi; Alberto Mazzini; Robert T Sorbi; Conti Virna; Roberto Ramoni; Roberto Favilla
Journal:  Int J Mol Sci       Date:  2011-04-04       Impact factor: 5.923

9.  3DSwap: curated knowledgebase of proteins involved in 3D domain swapping.

Authors:  Khader Shameer; Prashant N Shingate; S C P Manjunath; M Karthika; Ganesan Pugalenthi; Ramanathan Sowdhamini
Journal:  Database (Oxford)       Date:  2011-09-29       Impact factor: 3.451

10.  Under pressure that splits a family in two. The case of lipocalin family.

Authors:  Stephane Marchal; Anna Marabotti; Maria Staiano; Antonio Varriale; Thomas Domaschke; Reinhard Lange; Sabato D'Auria
Journal:  PLoS One       Date:  2012-11-27       Impact factor: 3.240

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