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Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses

Information on how insulin and insulin-like growth factors 1 and 2 (IGF-1 and -2) activate insulin receptors (IR-A and -B) and the IGF-1 receptor (IGF-1R) is crucial for understanding the difference in the biological activities of these peptide hormones. Cryo-EM studies have revealed that insulin us...

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Autores principales: Macháčková, Kateřina, Mlčochová, Květoslava, Potalitsyn, Pavlo, Hanková, Kateřina, Socha, Ondřej, Buděšínský, Miloš, Muždalo, Anja, Lepšík, Martin, Černeková, Michaela, Radosavljević, Jelena, Fábry, Milan, Mitrová, Katarína, Chrudinová, Martina, Lin, Jingjing, Yurenko, Yevgen, Hobza, Pavel, Selicharová, Irena, Žáková, Lenka, Jiráček, Jiří
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873181/
https://www.ncbi.nlm.nih.gov/pubmed/31558604
http://dx.doi.org/10.1074/jbc.RA119.010072
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author Macháčková, Kateřina
Mlčochová, Květoslava
Potalitsyn, Pavlo
Hanková, Kateřina
Socha, Ondřej
Buděšínský, Miloš
Muždalo, Anja
Lepšík, Martin
Černeková, Michaela
Radosavljević, Jelena
Fábry, Milan
Mitrová, Katarína
Chrudinová, Martina
Lin, Jingjing
Yurenko, Yevgen
Hobza, Pavel
Selicharová, Irena
Žáková, Lenka
Jiráček, Jiří
author_facet Macháčková, Kateřina
Mlčochová, Květoslava
Potalitsyn, Pavlo
Hanková, Kateřina
Socha, Ondřej
Buděšínský, Miloš
Muždalo, Anja
Lepšík, Martin
Černeková, Michaela
Radosavljević, Jelena
Fábry, Milan
Mitrová, Katarína
Chrudinová, Martina
Lin, Jingjing
Yurenko, Yevgen
Hobza, Pavel
Selicharová, Irena
Žáková, Lenka
Jiráček, Jiří
author_sort Macháčková, Kateřina
collection PubMed
description Information on how insulin and insulin-like growth factors 1 and 2 (IGF-1 and -2) activate insulin receptors (IR-A and -B) and the IGF-1 receptor (IGF-1R) is crucial for understanding the difference in the biological activities of these peptide hormones. Cryo-EM studies have revealed that insulin uses its binding sites 1 and 2 to interact with IR-A and have identified several critical residues in binding site 2. However, mutagenesis studies suggest that Ile-A10, Ser-A12, Leu-A13, and Glu-A17 also belong to insulin's site 2. Here, to resolve this discrepancy, we mutated these insulin residues and the equivalent residues in IGFs. Our findings revealed that equivalent mutations in the hormones can result in differential biological effects and that these effects can be receptor-specific. We noted that the insulin positions A10 and A17 are important for its binding to IR-A and IR-B and IGF-1R and that A13 is important only for IR-A and IR-B binding. The IGF-1/IGF-2 positions 51/50 and 54/53 did not appear to play critical roles in receptor binding, but mutations at IGF-1 position 58 and IGF-2 position 57 affected the binding. We propose that IGF-1 Glu-58 interacts with IGF-1R Arg-704 and belongs to IGF-1 site 1, a finding supported by the NMR structure of the less active Asp-58–IGF-1 variant. Computational analyses indicated that the aforementioned mutations can affect internal insulin dynamics and inhibit adoption of a receptor-bound conformation, important for binding to receptor site 1. We provide a molecular model and alternative hypotheses for how the mutated insulin residues affect activity.
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spelling pubmed-68731812019-11-25 Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses Macháčková, Kateřina Mlčochová, Květoslava Potalitsyn, Pavlo Hanková, Kateřina Socha, Ondřej Buděšínský, Miloš Muždalo, Anja Lepšík, Martin Černeková, Michaela Radosavljević, Jelena Fábry, Milan Mitrová, Katarína Chrudinová, Martina Lin, Jingjing Yurenko, Yevgen Hobza, Pavel Selicharová, Irena Žáková, Lenka Jiráček, Jiří J Biol Chem Protein Structure and Folding Information on how insulin and insulin-like growth factors 1 and 2 (IGF-1 and -2) activate insulin receptors (IR-A and -B) and the IGF-1 receptor (IGF-1R) is crucial for understanding the difference in the biological activities of these peptide hormones. Cryo-EM studies have revealed that insulin uses its binding sites 1 and 2 to interact with IR-A and have identified several critical residues in binding site 2. However, mutagenesis studies suggest that Ile-A10, Ser-A12, Leu-A13, and Glu-A17 also belong to insulin's site 2. Here, to resolve this discrepancy, we mutated these insulin residues and the equivalent residues in IGFs. Our findings revealed that equivalent mutations in the hormones can result in differential biological effects and that these effects can be receptor-specific. We noted that the insulin positions A10 and A17 are important for its binding to IR-A and IR-B and IGF-1R and that A13 is important only for IR-A and IR-B binding. The IGF-1/IGF-2 positions 51/50 and 54/53 did not appear to play critical roles in receptor binding, but mutations at IGF-1 position 58 and IGF-2 position 57 affected the binding. We propose that IGF-1 Glu-58 interacts with IGF-1R Arg-704 and belongs to IGF-1 site 1, a finding supported by the NMR structure of the less active Asp-58–IGF-1 variant. Computational analyses indicated that the aforementioned mutations can affect internal insulin dynamics and inhibit adoption of a receptor-bound conformation, important for binding to receptor site 1. We provide a molecular model and alternative hypotheses for how the mutated insulin residues affect activity. American Society for Biochemistry and Molecular Biology 2019-11-15 2019-09-26 /pmc/articles/PMC6873181/ /pubmed/31558604 http://dx.doi.org/10.1074/jbc.RA119.010072 Text en © 2019 Macháčková et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Protein Structure and Folding
Macháčková, Kateřina
Mlčochová, Květoslava
Potalitsyn, Pavlo
Hanková, Kateřina
Socha, Ondřej
Buděšínský, Miloš
Muždalo, Anja
Lepšík, Martin
Černeková, Michaela
Radosavljević, Jelena
Fábry, Milan
Mitrová, Katarína
Chrudinová, Martina
Lin, Jingjing
Yurenko, Yevgen
Hobza, Pavel
Selicharová, Irena
Žáková, Lenka
Jiráček, Jiří
Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
title Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
title_full Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
title_fullStr Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
title_full_unstemmed Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
title_short Mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
title_sort mutations at hypothetical binding site 2 in insulin and insulin-like growth factors 1 and 2 result in receptor- and hormone-specific responses
topic Protein Structure and Folding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873181/
https://www.ncbi.nlm.nih.gov/pubmed/31558604
http://dx.doi.org/10.1074/jbc.RA119.010072
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