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Defining the diagnostic effectiveness of genes for inclusion in panels: the experience of two decades of genetic testing for hypertrophic cardiomyopathy at a single center.

Francesco Mazzarotto | Francesca Girolami | Beatrice Boschi | Fausto Barlocco | Alessia Tomberli | Katia Baldini | Raffaele Coppini | Ilaria Tanini | Sara Bardi | Elisa Contini | Franco Cecchi | Elisabetta Pelo | Stuart A Cook | Elisabetta Cerbai | Corrado Poggesi | Francesca Torricelli | Roddy Walsh | Iacopo Olivotto
Genetics in medicine : official journal of the American College of Medical Genetics | 2019

Genetic testing in hypertrophic cardiomyopathy (HCM) has long relied on Sanger sequencing of sarcomeric genes. The advent of next-generation sequencing (NGS) has catalyzed routine testing of additional genes of dubious HCM-causing potential. We used 19 years of genetic testing results to define a reliable set of genes implicated in Mendelian HCM and assess the value of expanded NGS panels.

Pubmed ID: 29875424

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Associated grants

  • Agency: British Heart Foundation, United Kingdom
    Id: SP/10/10/28431
  • Agency: Department of Health, United Kingdom

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ExAc (tool)

RRID:SCR_004068

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on January 9, 2023. An aggregated data platform for genome sequencing data created by a coalition of investigators seeking to aggregate and harmonize exome sequencing data from a variety of large-scale sequencing projects, and to make summary data available for the wider scientific community. The data set provided on this website spans 61,486 unrelated individuals sequenced as part of various disease-specific and population genetic studies. They have removed individuals affected by severe pediatric disease, so this data set should serve as a useful reference set of allele frequencies for severe disease studies. All of the raw data from these projects have been reprocessed through the same pipeline, and jointly variant-called to increase consistency across projects. They ask that you not publish global (genome-wide) analyses of these data until after the ExAC flagship paper has been published, estimated to be in early 2015. If you''re uncertain which category your analyses fall into, please email them. The aggregation and release of summary data from the exomes collected by the Exome Aggregation Consortium has been approved by the Partners IRB (protocol 2013P001477, Genomic approaches to gene discovery in rare neuromuscular diseases).

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