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Homology modeling and global computational mutagenesis of human myosin VIIa

Usher syndrome type 1B (USH1B) is a genetic disorder caused by mutations in the unconventional Myosin VIIa (MYO7A) protein. USH1B is characterized by hearing loss due to abnormalities in the inner ear and vision loss due to retinitis pigmentosa. Here, we present the model of human MYO7A homodimer, b...

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Autores principales: Kuppa, Annapurna, Sergeev, Yuri V
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8059627/
https://www.ncbi.nlm.nih.gov/pubmed/33889793
http://dx.doi.org/10.15406/japlr.2021.10.00364
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author Kuppa, Annapurna
Sergeev, Yuri V
author_facet Kuppa, Annapurna
Sergeev, Yuri V
author_sort Kuppa, Annapurna
collection PubMed
description Usher syndrome type 1B (USH1B) is a genetic disorder caused by mutations in the unconventional Myosin VIIa (MYO7A) protein. USH1B is characterized by hearing loss due to abnormalities in the inner ear and vision loss due to retinitis pigmentosa. Here, we present the model of human MYO7A homodimer, built using homology modeling, and refined using 5 ns molecular dynamics in water. Global computational mutagenesis was applied to evaluate the effect of missense mutations that are critical for maintaining protein structure and stability of MYO7A in inherited eye disease. We found that 43.26% (77 out of 178 in HGMD) and 41.9% (221 out of 528 in ClinVar) of the disease-related missense mutations were associated with higher protein structure destabilizing effects. Overall, most mutations destabilizing the MYO7A protein were found to associate with USH1 and USH1B. Particularly, motor domain and MyTH4 domains were found to be most susceptible to mutations causing the USH1B phenotype. Our work contributes to the understanding of inherited disease from the atomic level of protein structure and analysis of the impact of genetic mutations on protein stability and genotype-to-phenotype relationships in human disease.
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spelling pubmed-80596272021-04-21 Homology modeling and global computational mutagenesis of human myosin VIIa Kuppa, Annapurna Sergeev, Yuri V J Anal Pharm Res Article Usher syndrome type 1B (USH1B) is a genetic disorder caused by mutations in the unconventional Myosin VIIa (MYO7A) protein. USH1B is characterized by hearing loss due to abnormalities in the inner ear and vision loss due to retinitis pigmentosa. Here, we present the model of human MYO7A homodimer, built using homology modeling, and refined using 5 ns molecular dynamics in water. Global computational mutagenesis was applied to evaluate the effect of missense mutations that are critical for maintaining protein structure and stability of MYO7A in inherited eye disease. We found that 43.26% (77 out of 178 in HGMD) and 41.9% (221 out of 528 in ClinVar) of the disease-related missense mutations were associated with higher protein structure destabilizing effects. Overall, most mutations destabilizing the MYO7A protein were found to associate with USH1 and USH1B. Particularly, motor domain and MyTH4 domains were found to be most susceptible to mutations causing the USH1B phenotype. Our work contributes to the understanding of inherited disease from the atomic level of protein structure and analysis of the impact of genetic mutations on protein stability and genotype-to-phenotype relationships in human disease. 2021-03-04 2021 /pmc/articles/PMC8059627/ /pubmed/33889793 http://dx.doi.org/10.15406/japlr.2021.10.00364 Text en https://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 build upon your work non-commercially.
spellingShingle Article
Kuppa, Annapurna
Sergeev, Yuri V
Homology modeling and global computational mutagenesis of human myosin VIIa
title Homology modeling and global computational mutagenesis of human myosin VIIa
title_full Homology modeling and global computational mutagenesis of human myosin VIIa
title_fullStr Homology modeling and global computational mutagenesis of human myosin VIIa
title_full_unstemmed Homology modeling and global computational mutagenesis of human myosin VIIa
title_short Homology modeling and global computational mutagenesis of human myosin VIIa
title_sort homology modeling and global computational mutagenesis of human myosin viia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8059627/
https://www.ncbi.nlm.nih.gov/pubmed/33889793
http://dx.doi.org/10.15406/japlr.2021.10.00364
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