Literature DB >> 26350513

Genetic investigations of sudden unexpected deaths in infancy using next-generation sequencing of 100 genes associated with cardiac diseases.

Christin Loeth Hertz1, Sofie Lindgren Christiansen1, Maiken Kudahl Larsen2, Morten Dahl3,4, Laura Ferrero-Miliani1, Peter Ejvin Weeke5, Oluf Pedersen6, Torben Hansen6,7, Niels Grarup6, Gyda Lolk Ottesen8, Rune Frank-Hansen1, Jytte Banner8, Niels Morling1.   

Abstract

Sudden infant death syndrome (SIDS) is the most frequent manner of post-perinatal death among infants. One of the suggested causes of the syndrome is inherited cardiac diseases, mainly channelopathies, that can trigger arrhythmias and sudden death. The purpose of this study was to investigate cases of sudden unexpected death in infancy (SUDI) for potential causative variants in 100 cardiac-associated genes. We investigated 47 SUDI cases of which 38 had previously been screened for variants in RYR2, KCNQ1, KCNH2 and SCN5A. Using the Haloplex Target Enrichment System (Agilent) and next-generation sequencing (NGS), the coding regions of 100 genes associated with inherited channelopathies and cardiomyopathies were captured and sequenced on the Illumina MiSeq platform. Sixteen (34%) of the SUDI cases had variants with likely functional effects, based on conservation, computational prediction and allele frequency, in one or more of the genes screened. The possible effects of the variants were not verified with family or functional studies. Eight (17%) of the SUDI cases had variants in genes affecting ion channel functions. The remaining eight cases had variants in genes associated with cardiomyopathies. In total, one third of the SUDI victims in a forensic setting had variants with likely functional effect that presumably contributed to the cause of death. The results support the assumption that channelopathies are important causes of SUDI. Thus, analysis of genes associated with cardiac diseases in SUDI victims is important in the forensic setting and a valuable supplement to the clinical investigation in all cases of sudden death.

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Year:  2015        PMID: 26350513      PMCID: PMC4867441          DOI: 10.1038/ejhg.2015.198

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   4.246


  42 in total

1.  Gain-of-function mutations in TRPM4 cause autosomal dominant isolated cardiac conduction disease.

Authors:  Hui Liu; Loubna El Zein; Martin Kruse; Romain Guinamard; Alf Beckmann; André Bozio; Güven Kurtbay; André Mégarbané; Iris Ohmert; Gérard Blaysat; Elisabeth Villain; Olaf Pongs; Patrice Bouvagnet
Journal:  Circ Cardiovasc Genet       Date:  2010-06-19

2.  Mutational spectrum in the Ca(2+)--activated cation channel gene TRPM4 in patients with cardiac conductance disturbances.

Authors:  Birgit Stallmeyer; Sven Zumhagen; Isabelle Denjoy; Guillaume Duthoit; Jean-Louis Hébert; Xavier Ferrer; Svetlana Maugenre; Wilhelm Schmitz; Uwe Kirchhefer; Ellen Schulze-Bahr; Pascale Guicheney; Eric Schulze-Bahr
Journal:  Hum Mutat       Date:  2011-10-20       Impact factor: 4.878

3.  Molecular spectrum of SLC22A5 (OCTN2) gene mutations detected in 143 subjects evaluated for systemic carnitine deficiency.

Authors:  Fang-Yuan Li; Ayman W El-Hattab; Erawati V Bawle; Richard G Boles; Eric S Schmitt; Fernando Scaglia; Lee-Jun Wong
Journal:  Hum Mutat       Date:  2010-08       Impact factor: 4.878

4.  Alpha-cardiac myosin heavy chain (MYH6) mutations affecting myofibril formation are associated with congenital heart defects.

Authors:  Javier T Granados-Riveron; Tushar K Ghosh; Mark Pope; Frances Bu'Lock; Christopher Thornborough; Jacqueline Eason; Edwin P Kirk; Diane Fatkin; Michael P Feneley; Richard P Harvey; John A L Armour; J David Brook
Journal:  Hum Mol Genet       Date:  2010-07-23       Impact factor: 6.150

5.  Genetic analysis in patients with left ventricular noncompaction and evidence for genetic heterogeneity.

Authors:  Yanlin Xing; Fukiko Ichida; Taro Matsuoka; Takeshi Isobe; Yumiko Ikemoto; Takashi Higaki; Tohru Tsuji; Noriyuki Haneda; Atsushi Kuwabara; Rui Chen; Takeshi Futatani; Shinichi Tsubata; Sayaka Watanabe; Kazuhiro Watanabe; Keiichi Hirono; Keiichiro Uese; Toshio Miyawaki; Karla R Bowles; Neil E Bowles; Jeffrey A Towbin
Journal:  Mol Genet Metab       Date:  2006-01-19       Impact factor: 4.797

Review 6.  Sudden infant death syndrome.

Authors:  Rachel Y Moon; Rosemary S C Horne; Fern R Hauck
Journal:  Lancet       Date:  2007-11-03       Impact factor: 79.321

7.  The Sequence Alignment/Map format and SAMtools.

Authors:  Heng Li; Bob Handsaker; Alec Wysoker; Tim Fennell; Jue Ruan; Nils Homer; Gabor Marth; Goncalo Abecasis; Richard Durbin
Journal:  Bioinformatics       Date:  2009-06-08       Impact factor: 6.937

8.  Contribution of long-QT syndrome genetic variants in sudden infant death syndrome.

Authors:  Gilles Millat; Béatrice Kugener; Philippe Chevalier; Mohamed Chahine; Hai Huang; Daniel Malicier; Claire Rodriguez-Lafrasse; Robert Rousson
Journal:  Pediatr Cardiol       Date:  2009-03-26       Impact factor: 1.655

9.  Fast and accurate short read alignment with Burrows-Wheeler transform.

Authors:  Heng Li; Richard Durbin
Journal:  Bioinformatics       Date:  2009-05-18       Impact factor: 6.937

10.  Hazardous cosleeping environments and risk factors amenable to change: case-control study of SIDS in south west England.

Authors:  Peter S Blair; Peter Sidebotham; Carol Evason-Coombe; Margaret Edmonds; Ellen M A Heckstall-Smith; Peter Fleming
Journal:  BMJ       Date:  2009-10-13
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  28 in total

1.  Post-mortem investigation of young deceased individuals with ischemic heart disease-outcome of supplementary genetic testing for dyslipidemia.

Authors:  C L Hertz; S L Christiansen; G L Ottesen; R Frank-Hansen; H Bundgaard; N Morling
Journal:  Int J Legal Med       Date:  2015-10-21       Impact factor: 2.686

Review 2.  [Genetic testing to prevent sudden cardiac death].

Authors:  B Stallmeyer; S Dittmann; E Schulze-Bahr
Journal:  Internist (Berl)       Date:  2018-08       Impact factor: 0.743

3.  Post-mortem whole-exome analysis in a large sudden infant death syndrome cohort with a focus on cardiovascular and metabolic genetic diseases.

Authors:  Jacqueline Neubauer; Maria Rita Lecca; Giancarlo Russo; Christine Bartsch; Argelia Medeiros-Domingo; Wolfgang Berger; Cordula Haas
Journal:  Eur J Hum Genet       Date:  2017-01-11       Impact factor: 4.246

4.  Biallelic Mutations in MYPN, Encoding Myopalladin, Are Associated with Childhood-Onset, Slowly Progressive Nemaline Myopathy.

Authors:  Satoko Miyatake; Satomi Mitsuhashi; Yukiko K Hayashi; Enkhsaikhan Purevjav; Atsuko Nishikawa; Eriko Koshimizu; Mikiya Suzuki; Kana Yatabe; Yuzo Tanaka; Katsuhisa Ogata; Satoshi Kuru; Masaaki Shiina; Yoshinori Tsurusaki; Mitsuko Nakashima; Takeshi Mizuguchi; Noriko Miyake; Hirotomo Saitsu; Kazuhiro Ogata; Mitsuru Kawai; Jeffrey Towbin; Ikuya Nonaka; Ichizo Nishino; Naomichi Matsumoto
Journal:  Am J Hum Genet       Date:  2016-12-22       Impact factor: 11.025

5.  Whole genome and transcriptome sequencing of post-mortem cardiac tissues from sudden cardiac death victims identifies a gene regulatory variant in NEXN.

Authors:  Jeppe D Andersen; Stine B Jacobsen; Linea C Trudsø; Marie-Louise Kampmann; Jytte Banner; Niels Morling
Journal:  Int J Legal Med       Date:  2019-08-07       Impact factor: 2.686

6.  Next-generation sequencing of 100 candidate genes in young victims of suspected sudden cardiac death with structural abnormalities of the heart.

Authors:  C L Hertz; S L Christiansen; L Ferrero-Miliani; M Dahl; P E Weeke; G L Ottesen; R Frank-Hansen; H Bundgaard; N Morling
Journal:  Int J Legal Med       Date:  2015-09-17       Impact factor: 2.686

7.  Biallelic PPA2 Mutations Cause Sudden Unexpected Cardiac Arrest in Infancy.

Authors:  Anne Guimier; Christopher T Gordon; François Godard; Gianina Ravenscroft; Myriam Oufadem; Christelle Vasnier; Caroline Rambaud; Patrick Nitschke; Christine Bole-Feysot; Cécile Masson; Stéphane Dauger; Cheryl Longman; Nigel G Laing; Béatrice Kugener; Damien Bonnet; Patrice Bouvagnet; Sylvie Di Filippo; Vincent Probst; Richard Redon; Philippe Charron; Agnès Rötig; Stanislas Lyonnet; Alain Dautant; Loïc de Pontual; Jean-Paul di Rago; Agnès Delahodde; Jeanne Amiel
Journal:  Am J Hum Genet       Date:  2016-08-11       Impact factor: 11.025

8.  Genetic investigation of 100 heart genes in sudden unexplained death victims in a forensic setting.

Authors:  Sofie Lindgren Christiansen; Christin Løth Hertz; Laura Ferrero-Miliani; Morten Dahl; Peter Ejvin Weeke; Gyda Lolk Ottesen; Rune Frank-Hansen; Henning Bundgaard; Niels Morling
Journal:  Eur J Hum Genet       Date:  2016-09-21       Impact factor: 4.246

9.  Exome-Wide Rare Variant Analyses in Sudden Infant Death Syndrome.

Authors:  David J Tester; Leonie C H Wong; Pritha Chanana; Belinda Gray; Amie Jaye; Jared M Evans; Margaret Evans; Peter Fleming; Iona Jeffrey; Marta Cohen; Jacob Tfelt-Hansen; Michael A Simpson; Elijah R Behr; Michael J Ackerman
Journal:  J Pediatr       Date:  2018-09-26       Impact factor: 4.406

Review 10.  Sudden infant death syndrome and inherited cardiac conditions.

Authors:  Alban-Elouen Baruteau; David J Tester; Jamie D Kapplinger; Michael J Ackerman; Elijah R Behr
Journal:  Nat Rev Cardiol       Date:  2017-09-07       Impact factor: 32.419

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