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Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders

BACKGROUND: Heritable bleeding and platelet disorders (BPD) are heterogeneous and frequently have an unknown genetic basis. The BRIDGE-BPD study aims to discover new causal genes for BPD by high throughput sequencing using cluster analyses based on improved and standardised deep, multi-system phenot...

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Autores principales: Westbury, Sarah K, Turro, Ernest, Greene, Daniel, Lentaigne, Claire, Kelly, Anne M, Bariana, Tadbir K, Simeoni, Ilenia, Pillois, Xavier, Attwood, Antony, Austin, Steve, Jansen, Sjoert BG, Bakchoul, Tamam, Crisp-Hihn, Abi, Erber, Wendy N, Favier, Rémi, Foad, Nicola, Gattens, Michael, Jolley, Jennifer D, Liesner, Ri, Meacham, Stuart, Millar, Carolyn M, Nurden, Alan T, Peerlinck, Kathelijne, Perry, David J, Poudel, Pawan, Schulman, Sol, Schulze, Harald, Stephens, Jonathan C, Furie, Bruce, Robinson, Peter N, van Geet, Chris, Rendon, Augusto, Gomez, Keith, Laffan, Michael A, Lambert, Michele P, Nurden, Paquita, Ouwehand, Willem H, Richardson, Sylvia, Mumford, Andrew D, Freson, Kathleen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4422517/
https://www.ncbi.nlm.nih.gov/pubmed/25949529
http://dx.doi.org/10.1186/s13073-015-0151-5
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author Westbury, Sarah K
Turro, Ernest
Greene, Daniel
Lentaigne, Claire
Kelly, Anne M
Bariana, Tadbir K
Simeoni, Ilenia
Pillois, Xavier
Attwood, Antony
Austin, Steve
Jansen, Sjoert BG
Bakchoul, Tamam
Crisp-Hihn, Abi
Erber, Wendy N
Favier, Rémi
Foad, Nicola
Gattens, Michael
Jolley, Jennifer D
Liesner, Ri
Meacham, Stuart
Millar, Carolyn M
Nurden, Alan T
Peerlinck, Kathelijne
Perry, David J
Poudel, Pawan
Schulman, Sol
Schulze, Harald
Stephens, Jonathan C
Furie, Bruce
Robinson, Peter N
van Geet, Chris
Rendon, Augusto
Gomez, Keith
Laffan, Michael A
Lambert, Michele P
Nurden, Paquita
Ouwehand, Willem H
Richardson, Sylvia
Mumford, Andrew D
Freson, Kathleen
author_facet Westbury, Sarah K
Turro, Ernest
Greene, Daniel
Lentaigne, Claire
Kelly, Anne M
Bariana, Tadbir K
Simeoni, Ilenia
Pillois, Xavier
Attwood, Antony
Austin, Steve
Jansen, Sjoert BG
Bakchoul, Tamam
Crisp-Hihn, Abi
Erber, Wendy N
Favier, Rémi
Foad, Nicola
Gattens, Michael
Jolley, Jennifer D
Liesner, Ri
Meacham, Stuart
Millar, Carolyn M
Nurden, Alan T
Peerlinck, Kathelijne
Perry, David J
Poudel, Pawan
Schulman, Sol
Schulze, Harald
Stephens, Jonathan C
Furie, Bruce
Robinson, Peter N
van Geet, Chris
Rendon, Augusto
Gomez, Keith
Laffan, Michael A
Lambert, Michele P
Nurden, Paquita
Ouwehand, Willem H
Richardson, Sylvia
Mumford, Andrew D
Freson, Kathleen
author_sort Westbury, Sarah K
collection PubMed
description BACKGROUND: Heritable bleeding and platelet disorders (BPD) are heterogeneous and frequently have an unknown genetic basis. The BRIDGE-BPD study aims to discover new causal genes for BPD by high throughput sequencing using cluster analyses based on improved and standardised deep, multi-system phenotyping of cases. METHODS: We report a new approach in which the clinical and laboratory characteristics of BPD cases are annotated with adapted Human Phenotype Ontology (HPO) terms. Cluster analyses are then used to characterise groups of cases with similar HPO terms and variants in the same genes. RESULTS: We show that 60% of index cases with heritable BPD enrolled at 10 European or US centres were annotated with HPO terms indicating abnormalities in organ systems other than blood or blood-forming tissues, particularly the nervous system. Cases within pedigrees clustered closely together on the bases of their HPO-coded phenotypes, as did cases sharing several clinically suspected syndromic disorders. Cases subsequently found to harbour variants in ACTN1 also clustered closely, even though diagnosis of this recently described disorder was not possible using only the clinical and laboratory data available to the enrolling clinician. CONCLUSIONS: These findings validate our novel HPO-based phenotype clustering methodology for known BPD, thus providing a new discovery tool for BPD of unknown genetic basis. This approach will also be relevant for other rare diseases with significant genetic heterogeneity. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13073-015-0151-5) contains supplementary material, which is available to authorized users.
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spelling pubmed-44225172015-05-07 Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders Westbury, Sarah K Turro, Ernest Greene, Daniel Lentaigne, Claire Kelly, Anne M Bariana, Tadbir K Simeoni, Ilenia Pillois, Xavier Attwood, Antony Austin, Steve Jansen, Sjoert BG Bakchoul, Tamam Crisp-Hihn, Abi Erber, Wendy N Favier, Rémi Foad, Nicola Gattens, Michael Jolley, Jennifer D Liesner, Ri Meacham, Stuart Millar, Carolyn M Nurden, Alan T Peerlinck, Kathelijne Perry, David J Poudel, Pawan Schulman, Sol Schulze, Harald Stephens, Jonathan C Furie, Bruce Robinson, Peter N van Geet, Chris Rendon, Augusto Gomez, Keith Laffan, Michael A Lambert, Michele P Nurden, Paquita Ouwehand, Willem H Richardson, Sylvia Mumford, Andrew D Freson, Kathleen Genome Med Research BACKGROUND: Heritable bleeding and platelet disorders (BPD) are heterogeneous and frequently have an unknown genetic basis. The BRIDGE-BPD study aims to discover new causal genes for BPD by high throughput sequencing using cluster analyses based on improved and standardised deep, multi-system phenotyping of cases. METHODS: We report a new approach in which the clinical and laboratory characteristics of BPD cases are annotated with adapted Human Phenotype Ontology (HPO) terms. Cluster analyses are then used to characterise groups of cases with similar HPO terms and variants in the same genes. RESULTS: We show that 60% of index cases with heritable BPD enrolled at 10 European or US centres were annotated with HPO terms indicating abnormalities in organ systems other than blood or blood-forming tissues, particularly the nervous system. Cases within pedigrees clustered closely together on the bases of their HPO-coded phenotypes, as did cases sharing several clinically suspected syndromic disorders. Cases subsequently found to harbour variants in ACTN1 also clustered closely, even though diagnosis of this recently described disorder was not possible using only the clinical and laboratory data available to the enrolling clinician. CONCLUSIONS: These findings validate our novel HPO-based phenotype clustering methodology for known BPD, thus providing a new discovery tool for BPD of unknown genetic basis. This approach will also be relevant for other rare diseases with significant genetic heterogeneity. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13073-015-0151-5) contains supplementary material, which is available to authorized users. BioMed Central 2015-04-09 /pmc/articles/PMC4422517/ /pubmed/25949529 http://dx.doi.org/10.1186/s13073-015-0151-5 Text en © Westbury et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. 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
Westbury, Sarah K
Turro, Ernest
Greene, Daniel
Lentaigne, Claire
Kelly, Anne M
Bariana, Tadbir K
Simeoni, Ilenia
Pillois, Xavier
Attwood, Antony
Austin, Steve
Jansen, Sjoert BG
Bakchoul, Tamam
Crisp-Hihn, Abi
Erber, Wendy N
Favier, Rémi
Foad, Nicola
Gattens, Michael
Jolley, Jennifer D
Liesner, Ri
Meacham, Stuart
Millar, Carolyn M
Nurden, Alan T
Peerlinck, Kathelijne
Perry, David J
Poudel, Pawan
Schulman, Sol
Schulze, Harald
Stephens, Jonathan C
Furie, Bruce
Robinson, Peter N
van Geet, Chris
Rendon, Augusto
Gomez, Keith
Laffan, Michael A
Lambert, Michele P
Nurden, Paquita
Ouwehand, Willem H
Richardson, Sylvia
Mumford, Andrew D
Freson, Kathleen
Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
title Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
title_full Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
title_fullStr Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
title_full_unstemmed Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
title_short Human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
title_sort human phenotype ontology annotation and cluster analysis to unravel genetic defects in 707 cases with unexplained bleeding and platelet disorders
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4422517/
https://www.ncbi.nlm.nih.gov/pubmed/25949529
http://dx.doi.org/10.1186/s13073-015-0151-5
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