Cargando…

Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua

The bilin-binding proteins (BBP) from lepidopteran insects are members of the lipocalin family of proteins and play a special role in pigmentation through the binding of biliverdin IXγ. Lopap, a BBP-like protein from the venom of the toxic caterpillar Lonomia obliqua has been reported to act as a se...

Descripción completa

Detalles Bibliográficos
Autores principales: Veiga, Ana B. G., Ribeiro, José M. C., Francischetti, Ivo M. B., Xu, Xueqing, Guimarães, Jorge A., Andersen, John F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4074040/
https://www.ncbi.nlm.nih.gov/pubmed/24972000
http://dx.doi.org/10.1371/journal.pone.0095424
_version_ 1782323166674157568
author Veiga, Ana B. G.
Ribeiro, José M. C.
Francischetti, Ivo M. B.
Xu, Xueqing
Guimarães, Jorge A.
Andersen, John F.
author_facet Veiga, Ana B. G.
Ribeiro, José M. C.
Francischetti, Ivo M. B.
Xu, Xueqing
Guimarães, Jorge A.
Andersen, John F.
author_sort Veiga, Ana B. G.
collection PubMed
description The bilin-binding proteins (BBP) from lepidopteran insects are members of the lipocalin family of proteins and play a special role in pigmentation through the binding of biliverdin IXγ. Lopap, a BBP-like protein from the venom of the toxic caterpillar Lonomia obliqua has been reported to act as a serine protease that activates the coagulation proenzyme prothrombin. Here we show that BBPLo, a variant of lopap from the same organism binds biliverdin IXγ, forming a complex that is spectrally identical with previously described BBP proteins. Although BBPLo is nearly identical in sequence to lopap, no prothrombinase activity was detected in our recombinant preparations using reconstituted systems containing coagulation factors Xa and Va, as well as anionic phospholipids. In addition to biliverdin, BBPLo was found to form a 1∶1 complex with heme prompting us to examine whether the unusual biliverdin IXγ ligand of BBPs forms as a result of oxidation of bound heme in situ rather than by a conventional heme oxygenase. Using ascorbate or a NADPH(+)-ferredoxin reductase-ferredoxin system as a source of reducing equivalents, spectral changes are seen that suggest an initial reduction of heme to the Fe(II) state and formation of an oxyferrous complex. The complex then disappears and a product identified as a 5-coordinate carbonyl complex of verdoheme, an intermediate in the biosynthesis of biliverdin, is formed. However, further reaction to form biliverdin was not observed, making it unlikely that biliverdin IXγ is formed by this pathway.
format Online
Article
Text
id pubmed-4074040
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40740402014-07-02 Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua Veiga, Ana B. G. Ribeiro, José M. C. Francischetti, Ivo M. B. Xu, Xueqing Guimarães, Jorge A. Andersen, John F. PLoS One Research Article The bilin-binding proteins (BBP) from lepidopteran insects are members of the lipocalin family of proteins and play a special role in pigmentation through the binding of biliverdin IXγ. Lopap, a BBP-like protein from the venom of the toxic caterpillar Lonomia obliqua has been reported to act as a serine protease that activates the coagulation proenzyme prothrombin. Here we show that BBPLo, a variant of lopap from the same organism binds biliverdin IXγ, forming a complex that is spectrally identical with previously described BBP proteins. Although BBPLo is nearly identical in sequence to lopap, no prothrombinase activity was detected in our recombinant preparations using reconstituted systems containing coagulation factors Xa and Va, as well as anionic phospholipids. In addition to biliverdin, BBPLo was found to form a 1∶1 complex with heme prompting us to examine whether the unusual biliverdin IXγ ligand of BBPs forms as a result of oxidation of bound heme in situ rather than by a conventional heme oxygenase. Using ascorbate or a NADPH(+)-ferredoxin reductase-ferredoxin system as a source of reducing equivalents, spectral changes are seen that suggest an initial reduction of heme to the Fe(II) state and formation of an oxyferrous complex. The complex then disappears and a product identified as a 5-coordinate carbonyl complex of verdoheme, an intermediate in the biosynthesis of biliverdin, is formed. However, further reaction to form biliverdin was not observed, making it unlikely that biliverdin IXγ is formed by this pathway. Public Library of Science 2014-06-27 /pmc/articles/PMC4074040/ /pubmed/24972000 http://dx.doi.org/10.1371/journal.pone.0095424 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Veiga, Ana B. G.
Ribeiro, José M. C.
Francischetti, Ivo M. B.
Xu, Xueqing
Guimarães, Jorge A.
Andersen, John F.
Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua
title Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua
title_full Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua
title_fullStr Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua
title_full_unstemmed Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua
title_short Examination of the Ligand-Binding and Enzymatic Properties of a Bilin-Binding Protein from the Poisonous Caterpillar Lonomia obliqua
title_sort examination of the ligand-binding and enzymatic properties of a bilin-binding protein from the poisonous caterpillar lonomia obliqua
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4074040/
https://www.ncbi.nlm.nih.gov/pubmed/24972000
http://dx.doi.org/10.1371/journal.pone.0095424
work_keys_str_mv AT veigaanabg examinationoftheligandbindingandenzymaticpropertiesofabilinbindingproteinfromthepoisonouscaterpillarlonomiaobliqua
AT ribeirojosemc examinationoftheligandbindingandenzymaticpropertiesofabilinbindingproteinfromthepoisonouscaterpillarlonomiaobliqua
AT francischettiivomb examinationoftheligandbindingandenzymaticpropertiesofabilinbindingproteinfromthepoisonouscaterpillarlonomiaobliqua
AT xuxueqing examinationoftheligandbindingandenzymaticpropertiesofabilinbindingproteinfromthepoisonouscaterpillarlonomiaobliqua
AT guimaraesjorgea examinationoftheligandbindingandenzymaticpropertiesofabilinbindingproteinfromthepoisonouscaterpillarlonomiaobliqua
AT andersenjohnf examinationoftheligandbindingandenzymaticpropertiesofabilinbindingproteinfromthepoisonouscaterpillarlonomiaobliqua