Cargando…

Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin

[Image: see text] The N-terminus of the B-chain of insulin may adopt two alternative conformations designated as the T- and R-states. Despite the recent structural insight into insulin–insulin receptor (IR) complexes, the physiological relevance of the T/R transition is still unclear. Hence, this st...

Descripción completa

Detalles Bibliográficos
Autores principales: Kosinová, Lucie, Veverka, Václav, Novotná, Pavlína, Collinsová, Michaela, Urbanová, Marie, Moody, Nicholas R., Turkenburg, Johan P., Jiráček, Jiří, Brzozowski, Andrzej M., Žáková, Lenka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4047818/
https://www.ncbi.nlm.nih.gov/pubmed/24819248
http://dx.doi.org/10.1021/bi500073z
_version_ 1782480444017606656
author Kosinová, Lucie
Veverka, Václav
Novotná, Pavlína
Collinsová, Michaela
Urbanová, Marie
Moody, Nicholas R.
Turkenburg, Johan P.
Jiráček, Jiří
Brzozowski, Andrzej M.
Žáková, Lenka
author_facet Kosinová, Lucie
Veverka, Václav
Novotná, Pavlína
Collinsová, Michaela
Urbanová, Marie
Moody, Nicholas R.
Turkenburg, Johan P.
Jiráček, Jiří
Brzozowski, Andrzej M.
Žáková, Lenka
author_sort Kosinová, Lucie
collection PubMed
description [Image: see text] The N-terminus of the B-chain of insulin may adopt two alternative conformations designated as the T- and R-states. Despite the recent structural insight into insulin–insulin receptor (IR) complexes, the physiological relevance of the T/R transition is still unclear. Hence, this study focused on the rational design, synthesis, and characterization of human insulin analogues structurally locked in expected R- or T-states. Sites B3, B5, and B8, capable of affecting the conformation of the N-terminus of the B-chain, were subjects of rational substitutions with amino acids with specific allowed and disallowed dihedral φ and ψ main-chain angles. α-Aminoisobutyric acid was systematically incorporated into positions B3, B5, and B8 for stabilization of the R-state, and N-methylalanine and d-proline amino acids were introduced at position B8 for stabilization of the T-state. IR affinities of the analogues were compared and correlated with their T/R transition ability and analyzed against their crystal and nuclear magnetic resonance structures. Our data revealed that (i) the T-like state is indeed important for the folding efficiency of (pro)insulin, (ii) the R-state is most probably incompatible with an active form of insulin, (iii) the R-state cannot be induced or stabilized by a single substitution at a specific site, and (iv) the B1–B8 segment is capable of folding into a variety of low-affinity T-like states. Therefore, we conclude that the active conformation of the N-terminus of the B-chain must be different from the “classical” T-state and that a substantial flexibility of the B1–B8 segment, where GlyB8 plays a key role, is a crucial prerequisite for an efficient insulin–IR interaction.
format Online
Article
Text
id pubmed-4047818
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-40478182014-06-09 Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin Kosinová, Lucie Veverka, Václav Novotná, Pavlína Collinsová, Michaela Urbanová, Marie Moody, Nicholas R. Turkenburg, Johan P. Jiráček, Jiří Brzozowski, Andrzej M. Žáková, Lenka Biochemistry [Image: see text] The N-terminus of the B-chain of insulin may adopt two alternative conformations designated as the T- and R-states. Despite the recent structural insight into insulin–insulin receptor (IR) complexes, the physiological relevance of the T/R transition is still unclear. Hence, this study focused on the rational design, synthesis, and characterization of human insulin analogues structurally locked in expected R- or T-states. Sites B3, B5, and B8, capable of affecting the conformation of the N-terminus of the B-chain, were subjects of rational substitutions with amino acids with specific allowed and disallowed dihedral φ and ψ main-chain angles. α-Aminoisobutyric acid was systematically incorporated into positions B3, B5, and B8 for stabilization of the R-state, and N-methylalanine and d-proline amino acids were introduced at position B8 for stabilization of the T-state. IR affinities of the analogues were compared and correlated with their T/R transition ability and analyzed against their crystal and nuclear magnetic resonance structures. Our data revealed that (i) the T-like state is indeed important for the folding efficiency of (pro)insulin, (ii) the R-state is most probably incompatible with an active form of insulin, (iii) the R-state cannot be induced or stabilized by a single substitution at a specific site, and (iv) the B1–B8 segment is capable of folding into a variety of low-affinity T-like states. Therefore, we conclude that the active conformation of the N-terminus of the B-chain must be different from the “classical” T-state and that a substantial flexibility of the B1–B8 segment, where GlyB8 plays a key role, is a crucial prerequisite for an efficient insulin–IR interaction. American Chemical Society 2014-05-12 2014-06-03 /pmc/articles/PMC4047818/ /pubmed/24819248 http://dx.doi.org/10.1021/bi500073z Text en Copyright © 2014 American Chemical Society Terms of Use CC-BY (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html)
spellingShingle Kosinová, Lucie
Veverka, Václav
Novotná, Pavlína
Collinsová, Michaela
Urbanová, Marie
Moody, Nicholas R.
Turkenburg, Johan P.
Jiráček, Jiří
Brzozowski, Andrzej M.
Žáková, Lenka
Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin
title Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin
title_full Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin
title_fullStr Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin
title_full_unstemmed Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin
title_short Insight into the Structural and Biological Relevance of the T/R Transition of the N-Terminus of the B-Chain in Human Insulin
title_sort insight into the structural and biological relevance of the t/r transition of the n-terminus of the b-chain in human insulin
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4047818/
https://www.ncbi.nlm.nih.gov/pubmed/24819248
http://dx.doi.org/10.1021/bi500073z
work_keys_str_mv AT kosinovalucie insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT veverkavaclav insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT novotnapavlina insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT collinsovamichaela insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT urbanovamarie insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT moodynicholasr insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT turkenburgjohanp insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT jiracekjiri insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT brzozowskiandrzejm insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin
AT zakovalenka insightintothestructuralandbiologicalrelevanceofthetrtransitionofthenterminusofthebchaininhumaninsulin