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Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin

Recently it has been proposed a model for fibrils of human insulin in which the fibril growth proceeds via stacking LVEALYL (fragment 11–17 from chain B of insulin) into pairs of tightly interdigitated [Image: see text]-sheets. The experiments have also shown that LVEALYL has high propensity to self...

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Autores principales: Chiang, Hsin-Lin, Ngo, Son Tung, Chen, Chun-Jung, Hu, Chin-Kun, Li, Mai Suan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3689759/
https://www.ncbi.nlm.nih.gov/pubmed/23805182
http://dx.doi.org/10.1371/journal.pone.0065358
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author Chiang, Hsin-Lin
Ngo, Son Tung
Chen, Chun-Jung
Hu, Chin-Kun
Li, Mai Suan
author_facet Chiang, Hsin-Lin
Ngo, Son Tung
Chen, Chun-Jung
Hu, Chin-Kun
Li, Mai Suan
author_sort Chiang, Hsin-Lin
collection PubMed
description Recently it has been proposed a model for fibrils of human insulin in which the fibril growth proceeds via stacking LVEALYL (fragment 11–17 from chain B of insulin) into pairs of tightly interdigitated [Image: see text]-sheets. The experiments have also shown that LVEALYL has high propensity to self-assembly and binding to insulin. This necessitates study of oligomerization of LVEALYL and its binding affinity to full-length insulin. Using the all-atom simulations with Gromos96 43a1 force field and explicit water it is shown that LVEALYL can aggregate. Theoretical estimation of the binding free energy of LVEALYL to insulin by the molecular mechanic Poisson-Boltzmann surface area method reveals its strong binding affinity to chain B, implying that, in agreement with the experiments, LVEALYL can affect insulin aggregation via binding mechanism. We predict that, similar to LVEALYL, peptide RGFFYT (fragment B22-27) can self-assemble and bind to insulin modulating its fibril growth process. The binding affinity of RGFFYT is shown to be comparable with that of LVEALYL.
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spelling pubmed-36897592013-06-26 Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin Chiang, Hsin-Lin Ngo, Son Tung Chen, Chun-Jung Hu, Chin-Kun Li, Mai Suan PLoS One Research Article Recently it has been proposed a model for fibrils of human insulin in which the fibril growth proceeds via stacking LVEALYL (fragment 11–17 from chain B of insulin) into pairs of tightly interdigitated [Image: see text]-sheets. The experiments have also shown that LVEALYL has high propensity to self-assembly and binding to insulin. This necessitates study of oligomerization of LVEALYL and its binding affinity to full-length insulin. Using the all-atom simulations with Gromos96 43a1 force field and explicit water it is shown that LVEALYL can aggregate. Theoretical estimation of the binding free energy of LVEALYL to insulin by the molecular mechanic Poisson-Boltzmann surface area method reveals its strong binding affinity to chain B, implying that, in agreement with the experiments, LVEALYL can affect insulin aggregation via binding mechanism. We predict that, similar to LVEALYL, peptide RGFFYT (fragment B22-27) can self-assemble and bind to insulin modulating its fibril growth process. The binding affinity of RGFFYT is shown to be comparable with that of LVEALYL. Public Library of Science 2013-06-21 /pmc/articles/PMC3689759/ /pubmed/23805182 http://dx.doi.org/10.1371/journal.pone.0065358 Text en © 2013 Chiang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chiang, Hsin-Lin
Ngo, Son Tung
Chen, Chun-Jung
Hu, Chin-Kun
Li, Mai Suan
Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin
title Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin
title_full Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin
title_fullStr Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin
title_full_unstemmed Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin
title_short Oligomerization of Peptides LVEALYL and RGFFYT and Their Binding Affinity to Insulin
title_sort oligomerization of peptides lvealyl and rgffyt and their binding affinity to insulin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3689759/
https://www.ncbi.nlm.nih.gov/pubmed/23805182
http://dx.doi.org/10.1371/journal.pone.0065358
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