Cargando…

Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain

Insulin and insulin-like growth factors I and II are closely related protein hormones. Their distinct evolution has resulted in different yet overlapping biological functions with insulin becoming a key regulator of metabolism, whereas insulin-like growth factors (IGF)-I/II are major growth factors....

Descripción completa

Detalles Bibliográficos
Autores principales: Hexnerová, Rozálie, Křížková, Květoslava, Fábry, Milan, Sieglová, Irena, Kedrová, Kateřina, Collinsová, Michaela, Ullrichová, Pavlína, Srb, Pavel, Williams, Christopher, Crump, Matthew P., Tošner, Zdeněk, Jiráček, Jiří, Veverka, Václav, Žáková, Lenka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5076530/
https://www.ncbi.nlm.nih.gov/pubmed/27510031
http://dx.doi.org/10.1074/jbc.M116.741041
_version_ 1782462038540288000
author Hexnerová, Rozálie
Křížková, Květoslava
Fábry, Milan
Sieglová, Irena
Kedrová, Kateřina
Collinsová, Michaela
Ullrichová, Pavlína
Srb, Pavel
Williams, Christopher
Crump, Matthew P.
Tošner, Zdeněk
Jiráček, Jiří
Veverka, Václav
Žáková, Lenka
author_facet Hexnerová, Rozálie
Křížková, Květoslava
Fábry, Milan
Sieglová, Irena
Kedrová, Kateřina
Collinsová, Michaela
Ullrichová, Pavlína
Srb, Pavel
Williams, Christopher
Crump, Matthew P.
Tošner, Zdeněk
Jiráček, Jiří
Veverka, Václav
Žáková, Lenka
author_sort Hexnerová, Rozálie
collection PubMed
description Insulin and insulin-like growth factors I and II are closely related protein hormones. Their distinct evolution has resulted in different yet overlapping biological functions with insulin becoming a key regulator of metabolism, whereas insulin-like growth factors (IGF)-I/II are major growth factors. Insulin and IGFs cross-bind with different affinities to closely related insulin receptor isoforms A and B (IR-A and IR-B) and insulin-like growth factor type I receptor (IGF-1R). Identification of structural determinants in IGFs and insulin that trigger their specific signaling pathways is of increasing importance in designing receptor-specific analogs with potential therapeutic applications. Here, we developed a straightforward protocol for production of recombinant IGF-II and prepared six IGF-II analogs with IGF-I-like mutations. All modified molecules exhibit significantly reduced affinity toward IR-A, particularly the analogs with a Pro-Gln insertion in the C-domain. Moreover, one of the analogs has enhanced binding affinity for IGF-1R due to a synergistic effect of the Pro-Gln insertion and S29N point mutation. Consequently, this analog has almost a 10-fold higher IGF-1R/IR-A binding specificity in comparison with native IGF-II. The established IGF-II purification protocol allowed for cost-effective isotope labeling required for a detailed NMR structural characterization of IGF-II analogs that revealed a link between the altered binding behavior of selected analogs and conformational rearrangement of their C-domains.
format Online
Article
Text
id pubmed-5076530
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-50765302016-10-25 Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain Hexnerová, Rozálie Křížková, Květoslava Fábry, Milan Sieglová, Irena Kedrová, Kateřina Collinsová, Michaela Ullrichová, Pavlína Srb, Pavel Williams, Christopher Crump, Matthew P. Tošner, Zdeněk Jiráček, Jiří Veverka, Václav Žáková, Lenka J Biol Chem Protein Structure and Folding Insulin and insulin-like growth factors I and II are closely related protein hormones. Their distinct evolution has resulted in different yet overlapping biological functions with insulin becoming a key regulator of metabolism, whereas insulin-like growth factors (IGF)-I/II are major growth factors. Insulin and IGFs cross-bind with different affinities to closely related insulin receptor isoforms A and B (IR-A and IR-B) and insulin-like growth factor type I receptor (IGF-1R). Identification of structural determinants in IGFs and insulin that trigger their specific signaling pathways is of increasing importance in designing receptor-specific analogs with potential therapeutic applications. Here, we developed a straightforward protocol for production of recombinant IGF-II and prepared six IGF-II analogs with IGF-I-like mutations. All modified molecules exhibit significantly reduced affinity toward IR-A, particularly the analogs with a Pro-Gln insertion in the C-domain. Moreover, one of the analogs has enhanced binding affinity for IGF-1R due to a synergistic effect of the Pro-Gln insertion and S29N point mutation. Consequently, this analog has almost a 10-fold higher IGF-1R/IR-A binding specificity in comparison with native IGF-II. The established IGF-II purification protocol allowed for cost-effective isotope labeling required for a detailed NMR structural characterization of IGF-II analogs that revealed a link between the altered binding behavior of selected analogs and conformational rearrangement of their C-domains. American Society for Biochemistry and Molecular Biology 2016-09-30 2016-08-10 /pmc/articles/PMC5076530/ /pubmed/27510031 http://dx.doi.org/10.1074/jbc.M116.741041 Text en © 2016 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version free via Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Protein Structure and Folding
Hexnerová, Rozálie
Křížková, Květoslava
Fábry, Milan
Sieglová, Irena
Kedrová, Kateřina
Collinsová, Michaela
Ullrichová, Pavlína
Srb, Pavel
Williams, Christopher
Crump, Matthew P.
Tošner, Zdeněk
Jiráček, Jiří
Veverka, Václav
Žáková, Lenka
Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain
title Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain
title_full Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain
title_fullStr Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain
title_full_unstemmed Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain
title_short Probing Receptor Specificity by Sampling the Conformational Space of the Insulin-like Growth Factor II C-domain
title_sort probing receptor specificity by sampling the conformational space of the insulin-like growth factor ii c-domain
topic Protein Structure and Folding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5076530/
https://www.ncbi.nlm.nih.gov/pubmed/27510031
http://dx.doi.org/10.1074/jbc.M116.741041
work_keys_str_mv AT hexnerovarozalie probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT krizkovakvetoslava probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT fabrymilan probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT sieglovairena probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT kedrovakaterina probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT collinsovamichaela probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT ullrichovapavlina probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT srbpavel probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT williamschristopher probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT crumpmatthewp probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT tosnerzdenek probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT jiracekjiri probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT veverkavaclav probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain
AT zakovalenka probingreceptorspecificitybysamplingtheconformationalspaceoftheinsulinlikegrowthfactoriicdomain