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SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity

PURPOSE: To evaluate the role of germline SDHA mutation analysis by (1) comprehensive literature review, (2) description of novel germline SDHA mutations and (3) in silico structural prediction analysis of missense substitutions in SDHA. PATIENTS AND METHODS: A systematic literature review and a ret...

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Autores principales: Casey, Ruth T., Ascher, David B., Rattenberry, Eleanor, Izatt, Louise, Andrews, Katrina A., Simpson, Helen L., Challis, Benjamen, Park, Soo‐Mi, Bulusu, Venkata R., Lalloo, Fiona, Pires, Douglas E. V., West, Hannah, Clark, Graeme R., Smith, Philip S., Whitworth, James, Papathomas, Thomas G., Taniere, Phillipe, Savisaar, Rosina, Hurst, Laurence D., Woodward, Emma R., Maher, Eamonn R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5441402/
https://www.ncbi.nlm.nih.gov/pubmed/28546994
http://dx.doi.org/10.1002/mgg3.279
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author Casey, Ruth T.
Ascher, David B.
Rattenberry, Eleanor
Izatt, Louise
Andrews, Katrina A.
Simpson, Helen L.
Challis, Benjamen
Park, Soo‐Mi
Bulusu, Venkata R.
Lalloo, Fiona
Pires, Douglas E. V.
West, Hannah
Clark, Graeme R.
Smith, Philip S.
Whitworth, James
Papathomas, Thomas G.
Taniere, Phillipe
Savisaar, Rosina
Hurst, Laurence D.
Woodward, Emma R.
Maher, Eamonn R.
author_facet Casey, Ruth T.
Ascher, David B.
Rattenberry, Eleanor
Izatt, Louise
Andrews, Katrina A.
Simpson, Helen L.
Challis, Benjamen
Park, Soo‐Mi
Bulusu, Venkata R.
Lalloo, Fiona
Pires, Douglas E. V.
West, Hannah
Clark, Graeme R.
Smith, Philip S.
Whitworth, James
Papathomas, Thomas G.
Taniere, Phillipe
Savisaar, Rosina
Hurst, Laurence D.
Woodward, Emma R.
Maher, Eamonn R.
author_sort Casey, Ruth T.
collection PubMed
description PURPOSE: To evaluate the role of germline SDHA mutation analysis by (1) comprehensive literature review, (2) description of novel germline SDHA mutations and (3) in silico structural prediction analysis of missense substitutions in SDHA. PATIENTS AND METHODS: A systematic literature review and a retrospective review of the molecular and clinical features of patients identified with putative germline variants in UK molecular genetic laboratories was performed. To evaluate the molecular consequences of SDHA missense variants, a novel model of the SDHA/B/C/D complex was generated and the structural effects of missense substitutions identified in the literature, our UK novel cohort and a further 32 “control missense variants” were predicted by the mCSM computational platform. These structural predictions were correlated with the results of tumor studies and other bioinformatic predictions. RESULTS: Literature review revealed reports of 17 different germline SDHA variants in 47 affected individuals from 45 kindreds. A further 10 different variants in 15 previously unreported cases (seven novel variants in eight patients) were added from our UK series. In silico structural prediction studies of 11 candidate missense germline mutations suggested that most (63.7%) would destabilize the SDHA protomer, and that most (78.1%) rare SDHA missense variants present in a control data set (ESP6500) were also associated with impaired protein stability. CONCLUSION: The clinical spectrum of SDHA‐associated neoplasia differs from that of germline mutations in other SDH‐subunits. The interpretation of the significance of novel SDHA missense substitutions is challenging. We recommend that multiple investigations (e.g. tumor studies, metabolomic profiling) should be performed to aid classification of rare missense variants before genetic testing results are used to influence clinical management.
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spelling pubmed-54414022017-05-25 SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity Casey, Ruth T. Ascher, David B. Rattenberry, Eleanor Izatt, Louise Andrews, Katrina A. Simpson, Helen L. Challis, Benjamen Park, Soo‐Mi Bulusu, Venkata R. Lalloo, Fiona Pires, Douglas E. V. West, Hannah Clark, Graeme R. Smith, Philip S. Whitworth, James Papathomas, Thomas G. Taniere, Phillipe Savisaar, Rosina Hurst, Laurence D. Woodward, Emma R. Maher, Eamonn R. Mol Genet Genomic Med Original Articles PURPOSE: To evaluate the role of germline SDHA mutation analysis by (1) comprehensive literature review, (2) description of novel germline SDHA mutations and (3) in silico structural prediction analysis of missense substitutions in SDHA. PATIENTS AND METHODS: A systematic literature review and a retrospective review of the molecular and clinical features of patients identified with putative germline variants in UK molecular genetic laboratories was performed. To evaluate the molecular consequences of SDHA missense variants, a novel model of the SDHA/B/C/D complex was generated and the structural effects of missense substitutions identified in the literature, our UK novel cohort and a further 32 “control missense variants” were predicted by the mCSM computational platform. These structural predictions were correlated with the results of tumor studies and other bioinformatic predictions. RESULTS: Literature review revealed reports of 17 different germline SDHA variants in 47 affected individuals from 45 kindreds. A further 10 different variants in 15 previously unreported cases (seven novel variants in eight patients) were added from our UK series. In silico structural prediction studies of 11 candidate missense germline mutations suggested that most (63.7%) would destabilize the SDHA protomer, and that most (78.1%) rare SDHA missense variants present in a control data set (ESP6500) were also associated with impaired protein stability. CONCLUSION: The clinical spectrum of SDHA‐associated neoplasia differs from that of germline mutations in other SDH‐subunits. The interpretation of the significance of novel SDHA missense substitutions is challenging. We recommend that multiple investigations (e.g. tumor studies, metabolomic profiling) should be performed to aid classification of rare missense variants before genetic testing results are used to influence clinical management. John Wiley and Sons Inc. 2017-03-02 /pmc/articles/PMC5441402/ /pubmed/28546994 http://dx.doi.org/10.1002/mgg3.279 Text en © 2017 The Authors. Molecular Genetics & Genomic Medicine published by Wiley Periodicals, Inc. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Casey, Ruth T.
Ascher, David B.
Rattenberry, Eleanor
Izatt, Louise
Andrews, Katrina A.
Simpson, Helen L.
Challis, Benjamen
Park, Soo‐Mi
Bulusu, Venkata R.
Lalloo, Fiona
Pires, Douglas E. V.
West, Hannah
Clark, Graeme R.
Smith, Philip S.
Whitworth, James
Papathomas, Thomas G.
Taniere, Phillipe
Savisaar, Rosina
Hurst, Laurence D.
Woodward, Emma R.
Maher, Eamonn R.
SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
title SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
title_full SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
title_fullStr SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
title_full_unstemmed SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
title_short SDHA related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
title_sort sdha related tumorigenesis: a new case series and literature review for variant interpretation and pathogenicity
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5441402/
https://www.ncbi.nlm.nih.gov/pubmed/28546994
http://dx.doi.org/10.1002/mgg3.279
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