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Gene's hubs in retinal diseases: A retinal disease network

BACKGROUND: Retinal diseases associated with the dysfunction or death of photoreceptors are a major cause of blindness around the world, improvements in genetics tools, like next generation sequencing (NGS) allows the discovery of genes and genetic changes that lead to many of those retinal diseases...

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Autores principales: Lázaro-Guevara, J.M., Flores-Robles, B.J., Garrido, K., Pinillos-Aransay, V., Elena-Ibáñez, A., Merino-Meléndez, L., López-Martínez, J.A., Victoriano-Lacalle, R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6218668/
https://www.ncbi.nlm.nih.gov/pubmed/30417144
http://dx.doi.org/10.1016/j.heliyon.2018.e00867
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author Lázaro-Guevara, J.M.
Flores-Robles, B.J.
Garrido, K.
Pinillos-Aransay, V.
Elena-Ibáñez, A.
Merino-Meléndez, L.
López-Martínez, J.A.
Victoriano-Lacalle, R.
author_facet Lázaro-Guevara, J.M.
Flores-Robles, B.J.
Garrido, K.
Pinillos-Aransay, V.
Elena-Ibáñez, A.
Merino-Meléndez, L.
López-Martínez, J.A.
Victoriano-Lacalle, R.
author_sort Lázaro-Guevara, J.M.
collection PubMed
description BACKGROUND: Retinal diseases associated with the dysfunction or death of photoreceptors are a major cause of blindness around the world, improvements in genetics tools, like next generation sequencing (NGS) allows the discovery of genes and genetic changes that lead to many of those retinal diseases. Though, there very few databases that explores a wide spectrum of retinal diseases, phenotypes, genes, and proteins, thus creating the need for a more comprehensive database, that groups all these parameters. METHODS: Multiple open access databases were compiled into a new comprehensive database. A biological network was then crated, and organized using Cytoscape. The network was scrutinized for presence of hubs, measuring the concentration of grouped nodes. Finally, a trace back analysis was performed in areas were the power law reports a high r-squared value near one, that indicates high nodes density. RESULTS: This work leads to creation of a retinal database that includes 324 diseases, 803 genes, 463 phenotypes, and 2461 proteins. Four biological networks (1) a disease and gene network connected by common phenotypes, (2) a disease and phenotype network connected by common genes, (3) a disease and gene network with shared disease or gene as the cause of an edge, and (4) a protein and disease network. The resulting networks will allow users to have easier searching for retinal diseases, phenotypes, genes, and proteins and their interrelationships. CONCLUSIONS: These networks have a broader range of information than previously available ones, helping clinicians in the comprehension of this complex group of diseases.
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spelling pubmed-62186682018-11-09 Gene's hubs in retinal diseases: A retinal disease network Lázaro-Guevara, J.M. Flores-Robles, B.J. Garrido, K. Pinillos-Aransay, V. Elena-Ibáñez, A. Merino-Meléndez, L. López-Martínez, J.A. Victoriano-Lacalle, R. Heliyon Article BACKGROUND: Retinal diseases associated with the dysfunction or death of photoreceptors are a major cause of blindness around the world, improvements in genetics tools, like next generation sequencing (NGS) allows the discovery of genes and genetic changes that lead to many of those retinal diseases. Though, there very few databases that explores a wide spectrum of retinal diseases, phenotypes, genes, and proteins, thus creating the need for a more comprehensive database, that groups all these parameters. METHODS: Multiple open access databases were compiled into a new comprehensive database. A biological network was then crated, and organized using Cytoscape. The network was scrutinized for presence of hubs, measuring the concentration of grouped nodes. Finally, a trace back analysis was performed in areas were the power law reports a high r-squared value near one, that indicates high nodes density. RESULTS: This work leads to creation of a retinal database that includes 324 diseases, 803 genes, 463 phenotypes, and 2461 proteins. Four biological networks (1) a disease and gene network connected by common phenotypes, (2) a disease and phenotype network connected by common genes, (3) a disease and gene network with shared disease or gene as the cause of an edge, and (4) a protein and disease network. The resulting networks will allow users to have easier searching for retinal diseases, phenotypes, genes, and proteins and their interrelationships. CONCLUSIONS: These networks have a broader range of information than previously available ones, helping clinicians in the comprehension of this complex group of diseases. Elsevier 2018-11-02 /pmc/articles/PMC6218668/ /pubmed/30417144 http://dx.doi.org/10.1016/j.heliyon.2018.e00867 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lázaro-Guevara, J.M.
Flores-Robles, B.J.
Garrido, K.
Pinillos-Aransay, V.
Elena-Ibáñez, A.
Merino-Meléndez, L.
López-Martínez, J.A.
Victoriano-Lacalle, R.
Gene's hubs in retinal diseases: A retinal disease network
title Gene's hubs in retinal diseases: A retinal disease network
title_full Gene's hubs in retinal diseases: A retinal disease network
title_fullStr Gene's hubs in retinal diseases: A retinal disease network
title_full_unstemmed Gene's hubs in retinal diseases: A retinal disease network
title_short Gene's hubs in retinal diseases: A retinal disease network
title_sort gene's hubs in retinal diseases: a retinal disease network
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6218668/
https://www.ncbi.nlm.nih.gov/pubmed/30417144
http://dx.doi.org/10.1016/j.heliyon.2018.e00867
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