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The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation

Insulin hormone is an important part of the endocrine system. It contains two polypeptide chains and plays a pivotal role in regulating carbohydrate metabolism. Insulin receptors (IR) located on cell surface interacts with insulin to control the intake of glucose. Although several studies have tried...

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Autores principales: Dehghan-Shasaltaneh, Marzieh, Lanjanian, Hossein, Riazi, Gholam Hossein, Masoudi-Nejad, Ali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5937078/
https://www.ncbi.nlm.nih.gov/pubmed/29755539
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author Dehghan-Shasaltaneh, Marzieh
Lanjanian, Hossein
Riazi, Gholam Hossein
Masoudi-Nejad, Ali
author_facet Dehghan-Shasaltaneh, Marzieh
Lanjanian, Hossein
Riazi, Gholam Hossein
Masoudi-Nejad, Ali
author_sort Dehghan-Shasaltaneh, Marzieh
collection PubMed
description Insulin hormone is an important part of the endocrine system. It contains two polypeptide chains and plays a pivotal role in regulating carbohydrate metabolism. Insulin receptors (IR) located on cell surface interacts with insulin to control the intake of glucose. Although several studies have tried to clarify the interaction between insulin and its receptor, the mechanism of this interaction remains elusive because of the receptor’s structural complexity and structural changes during the interaction. In this work, we tried to fractionate the interactions. Therefore, sequential docking method utilization of HADDOCK was used to achieve the mentioned goal, so the following processes were done: the first, two pdb files of IR i.e., 3LOH and 3W11 were concatenated using modeller. The second, flexible regions of IR were predicted by HingeProt. Output files resulting from HingeProt were uploaded into HADDOCK. Our results predict new salt bridges in the complex and emphasize on the role of salt bridges to maintain an inverted V structure of IR. Having an inverted V structure leads to activate intracellular signaling pathway. In addition to presence salt bridges to form a convenient structure of IR, the importance of α-chain of carboxyl terminal (α-CT) to interact with insulin was surveyed and also foretokened new insulin/IR contacts, particularly at site 2 (rigid parts 2 and 3). Finally, several conformational changes in residues Asn711-Val715 of α-CT were occurred, we suggest that α-CT is a suitable situation relative to insulin due to these conformational alterations.
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spelling pubmed-59370782018-05-11 The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation Dehghan-Shasaltaneh, Marzieh Lanjanian, Hossein Riazi, Gholam Hossein Masoudi-Nejad, Ali Iran J Pharm Res Original Article Insulin hormone is an important part of the endocrine system. It contains two polypeptide chains and plays a pivotal role in regulating carbohydrate metabolism. Insulin receptors (IR) located on cell surface interacts with insulin to control the intake of glucose. Although several studies have tried to clarify the interaction between insulin and its receptor, the mechanism of this interaction remains elusive because of the receptor’s structural complexity and structural changes during the interaction. In this work, we tried to fractionate the interactions. Therefore, sequential docking method utilization of HADDOCK was used to achieve the mentioned goal, so the following processes were done: the first, two pdb files of IR i.e., 3LOH and 3W11 were concatenated using modeller. The second, flexible regions of IR were predicted by HingeProt. Output files resulting from HingeProt were uploaded into HADDOCK. Our results predict new salt bridges in the complex and emphasize on the role of salt bridges to maintain an inverted V structure of IR. Having an inverted V structure leads to activate intracellular signaling pathway. In addition to presence salt bridges to form a convenient structure of IR, the importance of α-chain of carboxyl terminal (α-CT) to interact with insulin was surveyed and also foretokened new insulin/IR contacts, particularly at site 2 (rigid parts 2 and 3). Finally, several conformational changes in residues Asn711-Val715 of α-CT were occurred, we suggest that α-CT is a suitable situation relative to insulin due to these conformational alterations. Shaheed Beheshti University of Medical Sciences 2018 /pmc/articles/PMC5937078/ /pubmed/29755539 Text en © 2018 by School of Pharmacy, Shaheed Beheshti University of Medical Sciences and Health Services This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Dehghan-Shasaltaneh, Marzieh
Lanjanian, Hossein
Riazi, Gholam Hossein
Masoudi-Nejad, Ali
The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation
title The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation
title_full The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation
title_fullStr The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation
title_full_unstemmed The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation
title_short The importance of α-CT and Salt bridges in the Formation of Insulin and its Receptor Complex by Computational Simulation
title_sort importance of α-ct and salt bridges in the formation of insulin and its receptor complex by computational simulation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5937078/
https://www.ncbi.nlm.nih.gov/pubmed/29755539
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