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An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs

BACKGROUND: This study was performed to identify the non- synonymous polymorphisms in the myosin heavy chain 1 gene (MYH1) association with skeletal muscle development in economically important Jeju Native Pig (JNP) and Berkshire breeds. Herein, we present an in silico analysis, with a focus on (a)...

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Autores principales: Ghosh, Mrinmoy, Sodhi, Simrinder Singh, Sharma, Neelesh, Mongre, Raj Kumar, Kim, Nameun, Singh, Amit Kumar, Lee, Sung Jin, Kim, Dae Cheol, Kim, Sung Woo, Lee, Hak Kyo, Song, Ki-Duk, Jeong, Dong Kee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741023/
https://www.ncbi.nlm.nih.gov/pubmed/26847462
http://dx.doi.org/10.1186/s12863-016-0341-1
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author Ghosh, Mrinmoy
Sodhi, Simrinder Singh
Sharma, Neelesh
Mongre, Raj Kumar
Kim, Nameun
Singh, Amit Kumar
Lee, Sung Jin
Kim, Dae Cheol
Kim, Sung Woo
Lee, Hak Kyo
Song, Ki-Duk
Jeong, Dong Kee
author_facet Ghosh, Mrinmoy
Sodhi, Simrinder Singh
Sharma, Neelesh
Mongre, Raj Kumar
Kim, Nameun
Singh, Amit Kumar
Lee, Sung Jin
Kim, Dae Cheol
Kim, Sung Woo
Lee, Hak Kyo
Song, Ki-Duk
Jeong, Dong Kee
author_sort Ghosh, Mrinmoy
collection PubMed
description BACKGROUND: This study was performed to identify the non- synonymous polymorphisms in the myosin heavy chain 1 gene (MYH1) association with skeletal muscle development in economically important Jeju Native Pig (JNP) and Berkshire breeds. Herein, we present an in silico analysis, with a focus on (a) in silico approaches to predict the functional effect of non-synonymous SNP (nsSNP) in MYH1 on growth, and (b) molecular docking and dynamic simulation of MYH1 to predict the effects of those nsSNP on protein-protein association. RESULTS: The NextGENe (V 2.3.4.) tool was used to identify the variants in MYH1 from JNP and Berkshire using RNA seq. Gene ontology analysis of MYH1 revealed significant association with muscle contraction and muscle organ development. The 95 % confidence intervals clearly indicate that the mRNA expression of MYH1 is significantly higher in the Berkshire longissimus dorsi muscle samples than JNP breed. Concordant in silico analysis of MYH1, the open-source software tools identified 4 potential nsSNP (L884T, K972C, N981G, and Q1285C) in JNP and 1 nsSNP (H973G) in Berkshire pigs. Moreover, protein-protein interactions were studied to investigate the effect of MYH1 mutations on association with hub proteins, and MYH1 was found to be closely associated with the protein myosin light chain, phosphorylatable, fast skeletal muscle MYLPF. The results of molecular docking studies on MYH1 (native and 4 mutants) and MYLFP demonstrated that the native complex showed higher electrostatic energy (−466.5 Kcal mol(−1)), van der Walls energy (−87.3 Kcal mol(−1)), and interaction energy (−835.7 Kcal mol(−1)) than the mutant complexes. Furthermore, the molecular dynamic simulation revealed that the native complex yielded a higher root-mean-square deviation (0.2–0.55 nm) and lower root-mean-square fluctuation (approximately 0.08–0.3 nm) as compared to the mutant complexes. CONCLUSIONS: The results suggest that the variants at L884T, K972C, N981G, and Q1285C in MYH1 in JNP might represent a cause for the poor growth performance for this breed. This study is a pioneering in-depth in silico analysis of polymorphic MYH1 and will serve as a valuable resource for further targeted molecular diagnosis and population-based studies conducted for improving the growth performance of JNP. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12863-016-0341-1) contains supplementary material, which is available to authorized users.
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spelling pubmed-47410232016-02-05 An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs Ghosh, Mrinmoy Sodhi, Simrinder Singh Sharma, Neelesh Mongre, Raj Kumar Kim, Nameun Singh, Amit Kumar Lee, Sung Jin Kim, Dae Cheol Kim, Sung Woo Lee, Hak Kyo Song, Ki-Duk Jeong, Dong Kee BMC Genet Research Article BACKGROUND: This study was performed to identify the non- synonymous polymorphisms in the myosin heavy chain 1 gene (MYH1) association with skeletal muscle development in economically important Jeju Native Pig (JNP) and Berkshire breeds. Herein, we present an in silico analysis, with a focus on (a) in silico approaches to predict the functional effect of non-synonymous SNP (nsSNP) in MYH1 on growth, and (b) molecular docking and dynamic simulation of MYH1 to predict the effects of those nsSNP on protein-protein association. RESULTS: The NextGENe (V 2.3.4.) tool was used to identify the variants in MYH1 from JNP and Berkshire using RNA seq. Gene ontology analysis of MYH1 revealed significant association with muscle contraction and muscle organ development. The 95 % confidence intervals clearly indicate that the mRNA expression of MYH1 is significantly higher in the Berkshire longissimus dorsi muscle samples than JNP breed. Concordant in silico analysis of MYH1, the open-source software tools identified 4 potential nsSNP (L884T, K972C, N981G, and Q1285C) in JNP and 1 nsSNP (H973G) in Berkshire pigs. Moreover, protein-protein interactions were studied to investigate the effect of MYH1 mutations on association with hub proteins, and MYH1 was found to be closely associated with the protein myosin light chain, phosphorylatable, fast skeletal muscle MYLPF. The results of molecular docking studies on MYH1 (native and 4 mutants) and MYLFP demonstrated that the native complex showed higher electrostatic energy (−466.5 Kcal mol(−1)), van der Walls energy (−87.3 Kcal mol(−1)), and interaction energy (−835.7 Kcal mol(−1)) than the mutant complexes. Furthermore, the molecular dynamic simulation revealed that the native complex yielded a higher root-mean-square deviation (0.2–0.55 nm) and lower root-mean-square fluctuation (approximately 0.08–0.3 nm) as compared to the mutant complexes. CONCLUSIONS: The results suggest that the variants at L884T, K972C, N981G, and Q1285C in MYH1 in JNP might represent a cause for the poor growth performance for this breed. This study is a pioneering in-depth in silico analysis of polymorphic MYH1 and will serve as a valuable resource for further targeted molecular diagnosis and population-based studies conducted for improving the growth performance of JNP. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s12863-016-0341-1) contains supplementary material, which is available to authorized users. BioMed Central 2016-02-04 /pmc/articles/PMC4741023/ /pubmed/26847462 http://dx.doi.org/10.1186/s12863-016-0341-1 Text en © Ghosh et al. 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Ghosh, Mrinmoy
Sodhi, Simrinder Singh
Sharma, Neelesh
Mongre, Raj Kumar
Kim, Nameun
Singh, Amit Kumar
Lee, Sung Jin
Kim, Dae Cheol
Kim, Sung Woo
Lee, Hak Kyo
Song, Ki-Duk
Jeong, Dong Kee
An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs
title An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs
title_full An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs
title_fullStr An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs
title_full_unstemmed An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs
title_short An integrated in silico approach for functional and structural impact of non- synonymous SNPs in the MYH1 gene in Jeju Native Pigs
title_sort integrated in silico approach for functional and structural impact of non- synonymous snps in the myh1 gene in jeju native pigs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4741023/
https://www.ncbi.nlm.nih.gov/pubmed/26847462
http://dx.doi.org/10.1186/s12863-016-0341-1
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