Literature DB >> 22612257

Targeted next generation sequencing as a diagnostic tool in epileptic disorders.

Johannes R Lemke1, Erik Riesch, Tim Scheurenbrand, Max Schubach, Christian Wilhelm, Isabelle Steiner, Jörg Hansen, Carolina Courage, Sabina Gallati, Sarah Bürki, Susi Strozzi, Barbara Goeggel Simonetti, Sebastian Grunt, Maja Steinlin, Michael Alber, Markus Wolff, Thomas Klopstock, Eva C Prott, Rüdiger Lorenz, Christiane Spaich, Sabine Rona, Maya Lakshminarasimhan, Judith Kröll, Thomas Dorn, Günter Krämer, Matthis Synofzik, Felicitas Becker, Yvonne G Weber, Holger Lerche, Detlef Böhm, Saskia Biskup.   

Abstract

PURPOSE: Epilepsies have a highly heterogeneous background with a strong genetic contribution. The variety of unspecific and overlapping syndromic and nonsyndromic phenotypes often hampers a clear clinical diagnosis and prevents straightforward genetic testing. Knowing the genetic basis of a patient's epilepsy can be valuable not only for diagnosis but also for guiding treatment and estimating recurrence risks.
METHODS: To overcome these diagnostic restrictions, we composed a panel of genes for Next Generation Sequencing containing the most relevant epilepsy genes and covering the most relevant epilepsy phenotypes known so far. With this method, 265 genes were analyzed per patient in a single step. We evaluated this panel on a pilot cohort of 33 index patients with concise epilepsy phenotypes or with a severe but unspecific seizure disorder covering both sporadic and familial cases. KEY
FINDINGS: We identified presumed disease-causing mutations in 16 of 33 patients comprising sequence alterations in frequently as well as in less commonly affected genes. The detected aberrations encompassed known and unknown point mutations (SCN1A p.R222X, p. E289V, p.379R, p.R393H; SCN2A p.V208E; STXBP1 p.R122X; KCNJ10 p.L68P, p.I129V; KCTD7 p.L108M; KCNQ3 p.P574S; ARHGEF9 p.R290H; SMS p.F58L; TPP1 p.Q278R, p.Q422H; MFSD8 p.T294K), a putative splice site mutation (SCN1A c.693A> p.T/P231P) and small deletions (SCN1A p.F1330Lfs3X [1 bp]; MFSD8 p.A138Dfs10X [7 bp]). All mutations have been confirmed by conventional Sanger sequencing and, where possible, validated by parental testing and segregation analysis. In three patients with either Dravet syndrome or myoclonic epilepsy, we detected SCN1A mutations (p.R222X, p.P231P, p.R393H), even though other laboratories had previously excluded aberrations of this gene by Sanger sequencing or high-resolution melting analysis. SIGNIFICANCE: We have developed a fast and cost-efficient diagnostic screening method to analyze the genetic basis of epilepsies. We were able to detect mutations in patients with clear and with unspecific epilepsy phenotypes, to uncover the genetic basis of many so far unresolved cases with epilepsy including mutation detection in cases in which previous conventional methods yielded falsely negative results. Our approach thus proved to be a powerful diagnostic tool that may contribute to collecting information on both common and unknown epileptic disorders and in delineating associated phenotypes of less frequently mutated genes. Wiley Periodicals, Inc.
© 2012 International League Against Epilepsy.

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Year:  2012        PMID: 22612257     DOI: 10.1111/j.1528-1167.2012.03516.x

Source DB:  PubMed          Journal:  Epilepsia        ISSN: 0013-9580            Impact factor:   5.864


  128 in total

1.  Mutations in STX1B, encoding a presynaptic protein, cause fever-associated epilepsy syndromes.

Authors:  Julian Schubert; Aleksandra Siekierska; Mélanie Langlois; Patrick May; Clément Huneau; Felicitas Becker; Hiltrud Muhle; Arvid Suls; Johannes R Lemke; Carolien G F de Kovel; Holger Thiele; Kathryn Konrad; Amit Kawalia; Mohammad R Toliat; Thomas Sander; Franz Rüschendorf; Almuth Caliebe; Inga Nagel; Bernard Kohl; Angela Kecskés; Maxime Jacmin; Katia Hardies; Sarah Weckhuysen; Erik Riesch; Thomas Dorn; Eva H Brilstra; Stephanie Baulac; Rikke S Møller; Helle Hjalgrim; Bobby P C Koeleman; Karin Jurkat-Rott; Frank Lehman-Horn; Jared C Roach; Gustavo Glusman; Leroy Hood; David J Galas; Benoit Martin; Peter A M de Witte; Saskia Biskup; Peter De Jonghe; Ingo Helbig; Rudi Balling; Peter Nürnberg; Alexander D Crawford; Camila V Esguerra; Yvonne G Weber; Holger Lerche
Journal:  Nat Genet       Date:  2014-11-02       Impact factor: 38.330

Review 2.  Early-onset epileptic encephalopathies and the diagnostic approach to underlying causes.

Authors:  Su-Kyeong Hwang; Soonhak Kwon
Journal:  Korean J Pediatr       Date:  2015-11-22

3.  Clinical Genetic Testing in Epilepsy.

Authors:  Heather C Mefford
Journal:  Epilepsy Curr       Date:  2015 Jul-Aug       Impact factor: 7.500

Review 4.  The Impact of Next-Generation Sequencing on the Diagnosis and Treatment of Epilepsy in Paediatric Patients.

Authors:  Davide Mei; Elena Parrini; Carla Marini; Renzo Guerrini
Journal:  Mol Diagn Ther       Date:  2017-08       Impact factor: 4.074

Review 5.  From Genetic Testing to Precision Medicine in Epilepsy.

Authors:  Pasquale Striano; Berge A Minassian
Journal:  Neurotherapeutics       Date:  2020-04       Impact factor: 7.620

6.  A Recurrent De Novo PACS2 Heterozygous Missense Variant Causes Neonatal-Onset Developmental Epileptic Encephalopathy, Facial Dysmorphism, and Cerebellar Dysgenesis.

Authors:  Heather E Olson; Nolwenn Jean-Marçais; Edward Yang; Delphine Heron; Katrina Tatton-Brown; Paul A van der Zwaag; Emilia K Bijlsma; Bryan L Krock; E Backer; Erik-Jan Kamsteeg; Margje Sinnema; Margot R F Reijnders; David Bearden; Amber Begtrup; Aida Telegrafi; Roelineke J Lunsing; Lydie Burglen; Gaetan Lesca; Megan T Cho; Lacey A Smith; Beth R Sheidley; Christelle Moufawad El Achkar; Phillip L Pearl; Annapurna Poduri; Cara M Skraban; Jennifer Tarpinian; Addie I Nesbitt; Dietje E Fransen van de Putte; Claudia A L Ruivenkamp; Patrick Rump; Nicolas Chatron; Isabelle Sabatier; Julitta De Bellescize; Laurent Guibaud; David A Sweetser; Jessica L Waxler; Klaas J Wierenga; Jean Donadieu; Vinodh Narayanan; Keri M Ramsey; Caroline Nava; Jean-Baptiste Rivière; Antonio Vitobello; Frédéric Tran Mau-Them; Christophe Philippe; Ange-Line Bruel; Yannis Duffourd; Laurel Thomas; Stefan H Lelieveld; Janneke Schuurs-Hoeijmakers; Han G Brunner; Boris Keren; Julien Thevenon; Laurence Faivre; Gary Thomas; Christel Thauvin-Robinet
Journal:  Am J Hum Genet       Date:  2018-04-12       Impact factor: 11.025

7.  Diagnostic yield of genetic tests in epilepsy: A meta-analysis and cost-effectiveness study.

Authors:  Iván Sánchez Fernández; Tobias Loddenkemper; Marina Gaínza-Lein; Beth Rosen Sheidley; Annapurna Poduri
Journal:  Neurology       Date:  2019-01-04       Impact factor: 9.910

Review 8.  Application of next-generation sequencing technologies in Neurology.

Authors:  Teng Jiang; Meng-Shan Tan; Lan Tan; Jin-Tai Yu
Journal:  Ann Transl Med       Date:  2014-12

9.  A population-based cost-effectiveness study of early genetic testing in severe epilepsies of infancy.

Authors:  Katherine B Howell; Stefanie Eggers; Kim Dalziel; Jessica Riseley; Simone Mandelstam; Candace T Myers; Jacinta M McMahon; Amy Schneider; Gemma L Carvill; Heather C Mefford; Ingrid E Scheffer; A Simon Harvey
Journal:  Epilepsia       Date:  2018-05-11       Impact factor: 5.864

Review 10.  Genome-Wide Sequencing for Prenatal Detection of Fetal Single-Gene Disorders.

Authors:  Ignatia B van den Veyver; Christine M Eng
Journal:  Cold Spring Harb Perspect Med       Date:  2015-08-07       Impact factor: 6.915

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