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Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation

Purpose: Implication of protein-protein interactions (PPIs) in development of many diseases such as cancer makes them attractive for therapeutic intervention and rational drug design. RON (Recepteur d’Origine Nantais) tyrosine kinase receptor has gained considerable attention as promising target in...

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Autores principales: Zarei, Omid, Hamzeh-Mivehroud, Maryam, Benvenuti, Silvia, Ustun-Alkan, Fulya, Dastmalchi, Siavoush
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tabriz University of Medical Sciences 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5426727/
https://www.ncbi.nlm.nih.gov/pubmed/28507948
http://dx.doi.org/10.15171/apb.2017.018
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author Zarei, Omid
Hamzeh-Mivehroud, Maryam
Benvenuti, Silvia
Ustun-Alkan, Fulya
Dastmalchi, Siavoush
author_facet Zarei, Omid
Hamzeh-Mivehroud, Maryam
Benvenuti, Silvia
Ustun-Alkan, Fulya
Dastmalchi, Siavoush
author_sort Zarei, Omid
collection PubMed
description Purpose: Implication of protein-protein interactions (PPIs) in development of many diseases such as cancer makes them attractive for therapeutic intervention and rational drug design. RON (Recepteur d’Origine Nantais) tyrosine kinase receptor has gained considerable attention as promising target in cancer therapy. The activation of RON via its ligand, macrophage stimulation protein (MSP) is the most common mechanism of activation for this receptor. The aim of the current study was to perform in silico alanine scanning mutagenesis and to calculate binding energy for prediction of hot spots in protein-protein interface between RON and MSPβ chain (MSPβ). Methods: In this work the residues at the interface of RON-MSPβ complex were mutated to alanine and then molecular dynamics simulation was used to calculate binding free energy. Results: The results revealed that Gln(193), Arg(220), Glu(287), Pro(288), Glu(289), and His(424) residues from RON and Arg(521), His(528), Ser(565), Glu(658), and Arg(683) from MSPβ may play important roles in protein-protein interaction between RON and MSP. Conclusion: Identification of these RON hot spots is important in designing anti-RON drugs when the aim is to disrupt RON-MSP interaction. In the same way, the acquired information regarding the critical amino acids of MSPβ can be used in the process of rational drug design for developing MSP antagonizing agents, the development of novel MSP mimicking peptides where inhibition of RON activation is required, and the design of experimental site directed mutagenesis studies.
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spelling pubmed-54267272017-05-15 Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation Zarei, Omid Hamzeh-Mivehroud, Maryam Benvenuti, Silvia Ustun-Alkan, Fulya Dastmalchi, Siavoush Adv Pharm Bull Research Article Purpose: Implication of protein-protein interactions (PPIs) in development of many diseases such as cancer makes them attractive for therapeutic intervention and rational drug design. RON (Recepteur d’Origine Nantais) tyrosine kinase receptor has gained considerable attention as promising target in cancer therapy. The activation of RON via its ligand, macrophage stimulation protein (MSP) is the most common mechanism of activation for this receptor. The aim of the current study was to perform in silico alanine scanning mutagenesis and to calculate binding energy for prediction of hot spots in protein-protein interface between RON and MSPβ chain (MSPβ). Methods: In this work the residues at the interface of RON-MSPβ complex were mutated to alanine and then molecular dynamics simulation was used to calculate binding free energy. Results: The results revealed that Gln(193), Arg(220), Glu(287), Pro(288), Glu(289), and His(424) residues from RON and Arg(521), His(528), Ser(565), Glu(658), and Arg(683) from MSPβ may play important roles in protein-protein interaction between RON and MSP. Conclusion: Identification of these RON hot spots is important in designing anti-RON drugs when the aim is to disrupt RON-MSP interaction. In the same way, the acquired information regarding the critical amino acids of MSPβ can be used in the process of rational drug design for developing MSP antagonizing agents, the development of novel MSP mimicking peptides where inhibition of RON activation is required, and the design of experimental site directed mutagenesis studies. Tabriz University of Medical Sciences 2017-04 2017-04-13 /pmc/articles/PMC5426727/ /pubmed/28507948 http://dx.doi.org/10.15171/apb.2017.018 Text en ©2017 The Authors. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution (CC BY), which permits unrestricted use, distribution, and reproduction in any medium, as long as the original authors and source are cited. No permission is required from the authors or the publishers.
spellingShingle Research Article
Zarei, Omid
Hamzeh-Mivehroud, Maryam
Benvenuti, Silvia
Ustun-Alkan, Fulya
Dastmalchi, Siavoush
Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation
title Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation
title_full Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation
title_fullStr Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation
title_full_unstemmed Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation
title_short Characterizing the Hot Spots Involved in RON-MSPβ Complex Formation Using In Silico Alanine Scanning Mutagenesis and Molecular Dynamics Simulation
title_sort characterizing the hot spots involved in ron-mspβ complex formation using in silico alanine scanning mutagenesis and molecular dynamics simulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5426727/
https://www.ncbi.nlm.nih.gov/pubmed/28507948
http://dx.doi.org/10.15171/apb.2017.018
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