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Diagnostic value of partial exome sequencing in developmental disorders

Although intellectual disability is one of the major indications for genetic counselling, there are no homogenous diagnostic algorithms for molecular testing. While whole exome sequencing is increasingly applied, we questioned whether analyzing a partial exome, enriched for genes associated with Men...

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Autores principales: Gieldon, Laura, Mackenroth, Luisa, Kahlert, Anne-Karin, Lemke, Johannes R., Porrmann, Joseph, Schallner, Jens, von der Hagen, Maja, Markus, Susanne, Weidensee, Sabine, Novotna, Barbara, Soerensen, Charlotte, Klink, Barbara, Wagner, Johannes, Tzschach, Andreas, Jahn, Arne, Kuhlee, Franziska, Hackmann, Karl, Schrock, Evelin, Di Donato, Nataliya, Rump, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6084857/
https://www.ncbi.nlm.nih.gov/pubmed/30091983
http://dx.doi.org/10.1371/journal.pone.0201041
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author Gieldon, Laura
Mackenroth, Luisa
Kahlert, Anne-Karin
Lemke, Johannes R.
Porrmann, Joseph
Schallner, Jens
von der Hagen, Maja
Markus, Susanne
Weidensee, Sabine
Novotna, Barbara
Soerensen, Charlotte
Klink, Barbara
Wagner, Johannes
Tzschach, Andreas
Jahn, Arne
Kuhlee, Franziska
Hackmann, Karl
Schrock, Evelin
Di Donato, Nataliya
Rump, Andreas
author_facet Gieldon, Laura
Mackenroth, Luisa
Kahlert, Anne-Karin
Lemke, Johannes R.
Porrmann, Joseph
Schallner, Jens
von der Hagen, Maja
Markus, Susanne
Weidensee, Sabine
Novotna, Barbara
Soerensen, Charlotte
Klink, Barbara
Wagner, Johannes
Tzschach, Andreas
Jahn, Arne
Kuhlee, Franziska
Hackmann, Karl
Schrock, Evelin
Di Donato, Nataliya
Rump, Andreas
author_sort Gieldon, Laura
collection PubMed
description Although intellectual disability is one of the major indications for genetic counselling, there are no homogenous diagnostic algorithms for molecular testing. While whole exome sequencing is increasingly applied, we questioned whether analyzing a partial exome, enriched for genes associated with Mendelian disorders, might be a valid alternative approach that yields similar detection rates but requires less sequencing capacities. Within this context 106 patients with different intellectual disability forms were analyzed for mutations in 4.813 genes after pre-exclusion of copy number variations by array-CGH. Subsequent variant interpretation was performed in accordance with the ACMG guidelines. By this, a molecular diagnosis was established in 34% of cases and candidate mutations were identified in additional 24% of patients. Detection rates of causative mutations were above 30%, regardless of further symptoms, except for patients with seizures (23%). We did not detect an advantage from partial exome sequencing for patients with severe intellectual disability (36%) as compared to those with mild intellectual disability (44%). Specific clinical diagnoses pre-existed for 20 patients. Of these, 5 could be confirmed and an additional 6 cases could be solved, but showed mutations in other genes than initially suspected. In conclusion partial exome sequencing solved >30% of intellectual disability cases, which is similar to published rates obtained by whole exome sequencing. The approach therefore proved to be a valid alternative to whole exome sequencing for molecular diagnostics in this cohort. The method proved equally suitable for both syndromic and non-syndromic intellectual disability forms of all severity grades.
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spelling pubmed-60848572018-08-18 Diagnostic value of partial exome sequencing in developmental disorders Gieldon, Laura Mackenroth, Luisa Kahlert, Anne-Karin Lemke, Johannes R. Porrmann, Joseph Schallner, Jens von der Hagen, Maja Markus, Susanne Weidensee, Sabine Novotna, Barbara Soerensen, Charlotte Klink, Barbara Wagner, Johannes Tzschach, Andreas Jahn, Arne Kuhlee, Franziska Hackmann, Karl Schrock, Evelin Di Donato, Nataliya Rump, Andreas PLoS One Research Article Although intellectual disability is one of the major indications for genetic counselling, there are no homogenous diagnostic algorithms for molecular testing. While whole exome sequencing is increasingly applied, we questioned whether analyzing a partial exome, enriched for genes associated with Mendelian disorders, might be a valid alternative approach that yields similar detection rates but requires less sequencing capacities. Within this context 106 patients with different intellectual disability forms were analyzed for mutations in 4.813 genes after pre-exclusion of copy number variations by array-CGH. Subsequent variant interpretation was performed in accordance with the ACMG guidelines. By this, a molecular diagnosis was established in 34% of cases and candidate mutations were identified in additional 24% of patients. Detection rates of causative mutations were above 30%, regardless of further symptoms, except for patients with seizures (23%). We did not detect an advantage from partial exome sequencing for patients with severe intellectual disability (36%) as compared to those with mild intellectual disability (44%). Specific clinical diagnoses pre-existed for 20 patients. Of these, 5 could be confirmed and an additional 6 cases could be solved, but showed mutations in other genes than initially suspected. In conclusion partial exome sequencing solved >30% of intellectual disability cases, which is similar to published rates obtained by whole exome sequencing. The approach therefore proved to be a valid alternative to whole exome sequencing for molecular diagnostics in this cohort. The method proved equally suitable for both syndromic and non-syndromic intellectual disability forms of all severity grades. Public Library of Science 2018-08-09 /pmc/articles/PMC6084857/ /pubmed/30091983 http://dx.doi.org/10.1371/journal.pone.0201041 Text en © 2018 Gieldon et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are credited.
spellingShingle Research Article
Gieldon, Laura
Mackenroth, Luisa
Kahlert, Anne-Karin
Lemke, Johannes R.
Porrmann, Joseph
Schallner, Jens
von der Hagen, Maja
Markus, Susanne
Weidensee, Sabine
Novotna, Barbara
Soerensen, Charlotte
Klink, Barbara
Wagner, Johannes
Tzschach, Andreas
Jahn, Arne
Kuhlee, Franziska
Hackmann, Karl
Schrock, Evelin
Di Donato, Nataliya
Rump, Andreas
Diagnostic value of partial exome sequencing in developmental disorders
title Diagnostic value of partial exome sequencing in developmental disorders
title_full Diagnostic value of partial exome sequencing in developmental disorders
title_fullStr Diagnostic value of partial exome sequencing in developmental disorders
title_full_unstemmed Diagnostic value of partial exome sequencing in developmental disorders
title_short Diagnostic value of partial exome sequencing in developmental disorders
title_sort diagnostic value of partial exome sequencing in developmental disorders
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6084857/
https://www.ncbi.nlm.nih.gov/pubmed/30091983
http://dx.doi.org/10.1371/journal.pone.0201041
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