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PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants

PhyreRisk is an open-access, publicly accessible web application for interactively bridging genomic, proteomic and structural data facilitating the mapping of human variants onto protein structures. A major advance over other tools for sequence-structure variant mapping is that PhyreRisk provides in...

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Autores principales: Ofoegbu, Tochukwu C., David, Alessia, Kelley, Lawrence A., Mezulis, Stefans, Islam, Suhail A., Mersmann, Sophia F., Strömich, Léonie, Vakser, Ilya A., Houlston, Richard S., Sternberg, Michael J.E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6597944/
https://www.ncbi.nlm.nih.gov/pubmed/31075275
http://dx.doi.org/10.1016/j.jmb.2019.04.043
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author Ofoegbu, Tochukwu C.
David, Alessia
Kelley, Lawrence A.
Mezulis, Stefans
Islam, Suhail A.
Mersmann, Sophia F.
Strömich, Léonie
Vakser, Ilya A.
Houlston, Richard S.
Sternberg, Michael J.E.
author_facet Ofoegbu, Tochukwu C.
David, Alessia
Kelley, Lawrence A.
Mezulis, Stefans
Islam, Suhail A.
Mersmann, Sophia F.
Strömich, Léonie
Vakser, Ilya A.
Houlston, Richard S.
Sternberg, Michael J.E.
author_sort Ofoegbu, Tochukwu C.
collection PubMed
description PhyreRisk is an open-access, publicly accessible web application for interactively bridging genomic, proteomic and structural data facilitating the mapping of human variants onto protein structures. A major advance over other tools for sequence-structure variant mapping is that PhyreRisk provides information on 20,214 human canonical proteins and an additional 22,271 alternative protein sequences (isoforms). Specifically, PhyreRisk provides structural coverage (partial or complete) for 70% (14,035 of 20,214 canonical proteins) of the human proteome, by storing 18,874 experimental structures and 84,818 pre-built models of canonical proteins and their isoforms generated using our in house Phyre2. PhyreRisk reports 55,732 experimentally, multi-validated protein interactions from IntAct and 24,260 experimental structures of protein complexes. Another major feature of PhyreRisk is that, rather than presenting a limited set of precomputed variant-structure mapping of known genetic variants, it allows the user to explore novel variants using, as input, genomic coordinates formats (Ensembl, VCF, reference SNP ID and HGVS notations) and Human Build GRCh37 and GRCh38. PhyreRisk also supports mapping variants using amino acid coordinates and searching for genes or proteins of interest. PhyreRisk is designed to empower researchers to translate genetic data into protein structural information, thereby providing a more comprehensive appreciation of the functional impact of variants. PhyreRisk is freely available at http://phyrerisk.bc.ic.ac.uk
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spelling pubmed-65979442019-07-11 PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants Ofoegbu, Tochukwu C. David, Alessia Kelley, Lawrence A. Mezulis, Stefans Islam, Suhail A. Mersmann, Sophia F. Strömich, Léonie Vakser, Ilya A. Houlston, Richard S. Sternberg, Michael J.E. J Mol Biol Article PhyreRisk is an open-access, publicly accessible web application for interactively bridging genomic, proteomic and structural data facilitating the mapping of human variants onto protein structures. A major advance over other tools for sequence-structure variant mapping is that PhyreRisk provides information on 20,214 human canonical proteins and an additional 22,271 alternative protein sequences (isoforms). Specifically, PhyreRisk provides structural coverage (partial or complete) for 70% (14,035 of 20,214 canonical proteins) of the human proteome, by storing 18,874 experimental structures and 84,818 pre-built models of canonical proteins and their isoforms generated using our in house Phyre2. PhyreRisk reports 55,732 experimentally, multi-validated protein interactions from IntAct and 24,260 experimental structures of protein complexes. Another major feature of PhyreRisk is that, rather than presenting a limited set of precomputed variant-structure mapping of known genetic variants, it allows the user to explore novel variants using, as input, genomic coordinates formats (Ensembl, VCF, reference SNP ID and HGVS notations) and Human Build GRCh37 and GRCh38. PhyreRisk also supports mapping variants using amino acid coordinates and searching for genes or proteins of interest. PhyreRisk is designed to empower researchers to translate genetic data into protein structural information, thereby providing a more comprehensive appreciation of the functional impact of variants. PhyreRisk is freely available at http://phyrerisk.bc.ic.ac.uk Elsevier 2019-06-14 /pmc/articles/PMC6597944/ /pubmed/31075275 http://dx.doi.org/10.1016/j.jmb.2019.04.043 Text en © 2019 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
Ofoegbu, Tochukwu C.
David, Alessia
Kelley, Lawrence A.
Mezulis, Stefans
Islam, Suhail A.
Mersmann, Sophia F.
Strömich, Léonie
Vakser, Ilya A.
Houlston, Richard S.
Sternberg, Michael J.E.
PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants
title PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants
title_full PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants
title_fullStr PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants
title_full_unstemmed PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants
title_short PhyreRisk: A Dynamic Web Application to Bridge Genomics, Proteomics and 3D Structural Data to Guide Interpretation of Human Genetic Variants
title_sort phyrerisk: a dynamic web application to bridge genomics, proteomics and 3d structural data to guide interpretation of human genetic variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6597944/
https://www.ncbi.nlm.nih.gov/pubmed/31075275
http://dx.doi.org/10.1016/j.jmb.2019.04.043
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