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Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease

PURPOSE: To compare the efficacy of whole genome sequencing (WGS) with targeted next-generation sequencing (NGS) in the diagnosis of inherited retinal disease (IRD). DESIGN: Case series. PARTICIPANTS: A total of 562 patients diagnosed with IRD. METHODS: We performed a direct comparative analysis of...

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Autores principales: Ellingford, Jamie M., Barton, Stephanie, Bhaskar, Sanjeev, Williams, Simon G., Sergouniotis, Panagiotis I., O'Sullivan, James, Lamb, Janine A., Perveen, Rahat, Hall, Georgina, Newman, William G., Bishop, Paul N., Roberts, Stephen A., Leach, Rick, Tearle, Rick, Bayliss, Stuart, Ramsden, Simon C., Nemeth, Andrea H., Black, Graeme C.M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4845717/
https://www.ncbi.nlm.nih.gov/pubmed/26872967
http://dx.doi.org/10.1016/j.ophtha.2016.01.009
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author Ellingford, Jamie M.
Barton, Stephanie
Bhaskar, Sanjeev
Williams, Simon G.
Sergouniotis, Panagiotis I.
O'Sullivan, James
Lamb, Janine A.
Perveen, Rahat
Hall, Georgina
Newman, William G.
Bishop, Paul N.
Roberts, Stephen A.
Leach, Rick
Tearle, Rick
Bayliss, Stuart
Ramsden, Simon C.
Nemeth, Andrea H.
Black, Graeme C.M.
author_facet Ellingford, Jamie M.
Barton, Stephanie
Bhaskar, Sanjeev
Williams, Simon G.
Sergouniotis, Panagiotis I.
O'Sullivan, James
Lamb, Janine A.
Perveen, Rahat
Hall, Georgina
Newman, William G.
Bishop, Paul N.
Roberts, Stephen A.
Leach, Rick
Tearle, Rick
Bayliss, Stuart
Ramsden, Simon C.
Nemeth, Andrea H.
Black, Graeme C.M.
author_sort Ellingford, Jamie M.
collection PubMed
description PURPOSE: To compare the efficacy of whole genome sequencing (WGS) with targeted next-generation sequencing (NGS) in the diagnosis of inherited retinal disease (IRD). DESIGN: Case series. PARTICIPANTS: A total of 562 patients diagnosed with IRD. METHODS: We performed a direct comparative analysis of current molecular diagnostics with WGS. We retrospectively reviewed the findings from a diagnostic NGS DNA test for 562 patients with IRD. A subset of 46 of 562 patients (encompassing potential clinical outcomes of diagnostic analysis) also underwent WGS, and we compared mutation detection rates and molecular diagnostic yields. In addition, we compared the sensitivity and specificity of the 2 techniques to identify known single nucleotide variants (SNVs) using 6 control samples with publically available genotype data. MAIN OUTCOME MEASURES: Diagnostic yield of genomic testing. RESULTS: Across known disease-causing genes, targeted NGS and WGS achieved similar levels of sensitivity and specificity for SNV detection. However, WGS also identified 14 clinically relevant genetic variants through WGS that had not been identified by NGS diagnostic testing for the 46 individuals with IRD. These variants included large deletions and variants in noncoding regions of the genome. Identification of these variants confirmed a molecular diagnosis of IRD for 11 of the 33 individuals referred for WGS who had not obtained a molecular diagnosis through targeted NGS testing. Weighted estimates, accounting for population structure, suggest that WGS methods could result in an overall 29% (95% confidence interval, 15–45) uplift in diagnostic yield. CONCLUSIONS: We show that WGS methods can detect disease-causing genetic variants missed by current NGS diagnostic methodologies for IRD and thereby demonstrate the clinical utility and additional value of WGS.
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spelling pubmed-48457172016-05-06 Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease Ellingford, Jamie M. Barton, Stephanie Bhaskar, Sanjeev Williams, Simon G. Sergouniotis, Panagiotis I. O'Sullivan, James Lamb, Janine A. Perveen, Rahat Hall, Georgina Newman, William G. Bishop, Paul N. Roberts, Stephen A. Leach, Rick Tearle, Rick Bayliss, Stuart Ramsden, Simon C. Nemeth, Andrea H. Black, Graeme C.M. Ophthalmology Original Article PURPOSE: To compare the efficacy of whole genome sequencing (WGS) with targeted next-generation sequencing (NGS) in the diagnosis of inherited retinal disease (IRD). DESIGN: Case series. PARTICIPANTS: A total of 562 patients diagnosed with IRD. METHODS: We performed a direct comparative analysis of current molecular diagnostics with WGS. We retrospectively reviewed the findings from a diagnostic NGS DNA test for 562 patients with IRD. A subset of 46 of 562 patients (encompassing potential clinical outcomes of diagnostic analysis) also underwent WGS, and we compared mutation detection rates and molecular diagnostic yields. In addition, we compared the sensitivity and specificity of the 2 techniques to identify known single nucleotide variants (SNVs) using 6 control samples with publically available genotype data. MAIN OUTCOME MEASURES: Diagnostic yield of genomic testing. RESULTS: Across known disease-causing genes, targeted NGS and WGS achieved similar levels of sensitivity and specificity for SNV detection. However, WGS also identified 14 clinically relevant genetic variants through WGS that had not been identified by NGS diagnostic testing for the 46 individuals with IRD. These variants included large deletions and variants in noncoding regions of the genome. Identification of these variants confirmed a molecular diagnosis of IRD for 11 of the 33 individuals referred for WGS who had not obtained a molecular diagnosis through targeted NGS testing. Weighted estimates, accounting for population structure, suggest that WGS methods could result in an overall 29% (95% confidence interval, 15–45) uplift in diagnostic yield. CONCLUSIONS: We show that WGS methods can detect disease-causing genetic variants missed by current NGS diagnostic methodologies for IRD and thereby demonstrate the clinical utility and additional value of WGS. Elsevier 2016-05 /pmc/articles/PMC4845717/ /pubmed/26872967 http://dx.doi.org/10.1016/j.ophtha.2016.01.009 Text en © 2016 by the American Academy of Ophthalmology. All rights reserved. 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 Original Article
Ellingford, Jamie M.
Barton, Stephanie
Bhaskar, Sanjeev
Williams, Simon G.
Sergouniotis, Panagiotis I.
O'Sullivan, James
Lamb, Janine A.
Perveen, Rahat
Hall, Georgina
Newman, William G.
Bishop, Paul N.
Roberts, Stephen A.
Leach, Rick
Tearle, Rick
Bayliss, Stuart
Ramsden, Simon C.
Nemeth, Andrea H.
Black, Graeme C.M.
Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease
title Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease
title_full Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease
title_fullStr Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease
title_full_unstemmed Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease
title_short Whole Genome Sequencing Increases Molecular Diagnostic Yield Compared with Current Diagnostic Testing for Inherited Retinal Disease
title_sort whole genome sequencing increases molecular diagnostic yield compared with current diagnostic testing for inherited retinal disease
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4845717/
https://www.ncbi.nlm.nih.gov/pubmed/26872967
http://dx.doi.org/10.1016/j.ophtha.2016.01.009
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