Literature DB >> 20181576

A common single nucleotide polymorphism can exacerbate long-QT type 2 syndrome leading to sudden infant death.

Eyal Nof1, Jonathan M Cordeiro, Guillermo J Pérez, Fabiana S Scornik, Kirstine Calloe, Barry Love, Elena Burashnikov, Gabriel Caceres, Moshe Gunsburg, Charles Antzelevitch.   

Abstract

BACKGROUND: Identification of infants at risk for sudden arrhythmic death remains one of the leading challenges of modern medicine. We present a family in which a common polymorphism (single nucleotide polymorphism) inherited from the father, combined with a stop codon mutation inherited from the mother (both asymptomatic), led to 2 cases of sudden infant death. METHODS AND
RESULTS: KCNQ1, KCNH2, SCN5A, KCNE1, KCNE2, CACNA1c, CACNB2b, and KCNJ2 genes were amplified and analyzed by direct sequencing. Functional electrophysiological studies were performed with the single nucleotide polymorphism and mutation expressed singly and in combination in Chinese ovary (CHO-K1) and COS-1 cells. An asymptomatic woman presenting after the death of her 2-day-old infant and spontaneous abortion of a second baby in the first trimester was referred for genetic analysis. The newborn infant had nearly incessant ventricular tachycardia while in utero and a prolonged QTc (560 ms). The mother was asymptomatic but displayed a prolonged QTc. Genetic screening of the mother revealed a heterozygous nonsense mutation (P926AfsX14) in KCNH2, predicting a stop codon. The father was asymptomatic with a normal QTc but had a heterozygous polymorphism (K897T) in KCNH2. The baby who died at 2 days of age and the aborted fetus inherited both K897T and P926AfsX14. Heterologous coexpression of K897T and P926AfsX14 led to loss of function of HERG current much greater than expression of K897T or P926AfsX14 alone.
CONCLUSIONS: Our data suggest that a common polymorphism (K897T) can markedly accentuate the loss of function of mildly defective HERG channels, leading to long-QT syndrome-mediated arrhythmias and sudden infant death.

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Year:  2010        PMID: 20181576      PMCID: PMC2858238          DOI: 10.1161/CIRCGENETICS.109.898569

Source DB:  PubMed          Journal:  Circ Cardiovasc Genet        ISSN: 1942-3268


  38 in total

1.  KCNH2-K897T is a genetic modifier of latent congenital long-QT syndrome.

Authors:  Lia Crotti; Andrew L Lundquist; Roberto Insolia; Matteo Pedrazzini; Chiara Ferrandi; Gaetano M De Ferrari; Alessandro Vicentini; Ping Yang; Dan M Roden; Alfred L George; Peter J Schwartz
Journal:  Circulation       Date:  2005-08-22       Impact factor: 29.690

2.  Association of KCNQ1, KCNE1, KCNH2 and SCN5A polymorphisms with QTc interval length in a healthy population.

Authors:  Laetitia Gouas; Viviane Nicaud; Myriam Berthet; Anne Forhan; Laurence Tiret; Beverley Balkau; Pascale Guicheney
Journal:  Eur J Hum Genet       Date:  2005-11       Impact factor: 4.246

3.  Compound heterozygous mutations P336L and I1660V in the human cardiac sodium channel associated with the Brugada syndrome.

Authors:  Jonathan M Cordeiro; Hector Barajas-Martinez; Kui Hong; Elena Burashnikov; Ryan Pfeiffer; Anne-Marie Orsino; Yue Sheng Wu; Dan Hu; Josep Brugada; Pedro Brugada; Charles Antzelevitch; Robert Dumaine; Ramon Brugada
Journal:  Circulation       Date:  2006-10-30       Impact factor: 29.690

4.  Mutant caveolin-3 induces persistent late sodium current and is associated with long-QT syndrome.

Authors:  Matteo Vatta; Michael J Ackerman; Bin Ye; Jonathan C Makielski; Enoh E Ughanze; Erica W Taylor; David J Tester; Ravi C Balijepalli; Jason D Foell; Zhaohui Li; Timothy J Kamp; Jeffrey A Towbin
Journal:  Circulation       Date:  2006-10-23       Impact factor: 29.690

5.  C-terminal HERG (LQT2) mutations disrupt IKr channel regulation through 14-3-3epsilon.

Authors:  Chi-un Choe; Eric Schulze-Bahr; Axel Neu; Jun Xu; Zheng I Zhu; Kathrin Sauter; Robert Bähring; Silvia Priori; Pascale Guicheney; Gerold Mönnig; Carlo Neapolitano; Jan Heidemann; Colleen E Clancy; Olaf Pongs; Dirk Isbrandt
Journal:  Hum Mol Genet       Date:  2006-08-21       Impact factor: 6.150

6.  Mutations in the HERG K+-ion channel: a novel link between long QT syndrome and sudden infant death syndrome.

Authors:  Michael Christiansen; Niels Tønder; Lars A Larsen; Paal S Andersen; Henrik Simonsen; Nina Oyen; Jørgen K Kanters; Joes R Jacobsen; Inger Fosdal; Gøran Wettrell; Keld Kjeldsen
Journal:  Am J Cardiol       Date:  2005-02-01       Impact factor: 2.778

7.  Electrocardiographic features in Andersen-Tawil syndrome patients with KCNJ2 mutations: characteristic T-U-wave patterns predict the KCNJ2 genotype.

Authors:  Li Zhang; D Woodrow Benson; Martin Tristani-Firouzi; Louis J Ptacek; Rabi Tawil; Peter J Schwartz; Alfred L George; Minoru Horie; Gregor Andelfinger; Gregory L Snow; Ying-Hui Fu; Michael J Ackerman; G Michael Vincent
Journal:  Circulation       Date:  2005-05-23       Impact factor: 29.690

8.  Survey of the coding region of the HERG gene in long QT syndrome reveals six novel mutations and an amino acid polymorphism with possible phenotypic effects.

Authors:  P Laitinen; H Fodstad; K Piippo; H Swan; L Toivonen; M Viitasalo; J Kaprio; K Kontula
Journal:  Hum Mutat       Date:  2000-06       Impact factor: 4.878

9.  Modulation of I(Kr) inactivation by mutation N588K in KCNH2: a link to arrhythmogenesis in short QT syndrome.

Authors:  J M Cordeiro; R Brugada; Y S Wu; K Hong; R Dumaine
Journal:  Cardiovasc Res       Date:  2005-03-28       Impact factor: 10.787

10.  Molecular and functional characterization of common polymorphisms in HERG (KCNH2) potassium channels.

Authors:  Blake D Anson; Michael J Ackerman; David J Tester; Melissa L Will; Brian P Delisle; Corey L Anderson; Craig T January
Journal:  Am J Physiol Heart Circ Physiol       Date:  2004-02-19       Impact factor: 4.733

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  21 in total

1.  Risk of syncope in family members who are genotype-negative for a family-associated long-QT syndrome mutation.

Authors:  Alon Barsheshet; Arthur J Moss; Scott McNitt; Slava Polonsky; Coeli M Lopes; Wojciech Zareba; Jennifer L Robinson; Michael J Ackerman; Jesaia Benhorin; Elizabeth S Kaufman; Jeffrey A Towbin; G Michael Vincent; Ming Qi; Ilan Goldenberg
Journal:  Circ Cardiovasc Genet       Date:  2011-08-10

Review 2.  Clinical and genetic determinants of torsade de pointes risk.

Authors:  Andrew J Sauer; Christopher Newton-Cheh
Journal:  Circulation       Date:  2012-04-03       Impact factor: 29.690

3.  Mutations in the cardiac L-type calcium channel associated with inherited J-wave syndromes and sudden cardiac death.

Authors:  Elena Burashnikov; Ryan Pfeiffer; Héctor Barajas-Martinez; Eva Delpón; Dan Hu; Mayurika Desai; Martin Borggrefe; Michel Häissaguerre; Ronald Kanter; Guido D Pollevick; Alejandra Guerchicoff; Ruben Laiño; Mark Marieb; Koonlawee Nademanee; Gi-Byoung Nam; Roberto Robles; Rainer Schimpf; Dwight D Stapleton; Sami Viskin; Stephen Winters; Christian Wolpert; Samuel Zimmern; Christian Veltmann; Charles Antzelevitch
Journal:  Heart Rhythm       Date:  2010-10-14       Impact factor: 6.343

4.  Nonsense-mediated mRNA decay caused by a frameshift mutation in a large kindred of type 2 long QT syndrome.

Authors:  Ignatius Gerardo Zarraga; Li Zhang; Matthew R Stump; Qiuming Gong; G Michael Vincent; Zhengfeng Zhou
Journal:  Heart Rhythm       Date:  2011-03-15       Impact factor: 6.343

5.  Defining the disconnect between in vitro models and human arrhythmogenic disease: context matters.

Authors:  Amy C Sturm; Peter J Mohler
Journal:  Circulation       Date:  2011-08-30       Impact factor: 29.690

6.  Torsades de pointes following acute myocardial infarction: evidence for a deadly link with a common genetic variant.

Authors:  Lia Crotti; Dan Hu; Hector Barajas-Martinez; Gaetano M De Ferrari; Antonio Oliva; Roberto Insolia; Guido D Pollevick; Federica Dagradi; Alejandra Guerchicoff; Federica Greco; Peter J Schwartz; Sami Viskin; Charles Antzelevitch
Journal:  Heart Rhythm       Date:  2012-02-13       Impact factor: 6.343

Review 7.  Genetics of sudden cardiac death syndromes.

Authors:  Nagesh Chopra; Björn C Knollmann
Journal:  Curr Opin Cardiol       Date:  2011-05       Impact factor: 2.161

8.  Mutation analysis for the detection of long QT-syndrome (LQTS) associated SNPs.

Authors:  Edelmann J; Dobosz T; Sobieszczanska M; Kawecka-Negrusz M; Dreßler J; Nastainczyk-Wulf M
Journal:  Int J Legal Med       Date:  2016-09-09       Impact factor: 2.686

9.  Position of premature termination codons determines susceptibility of hERG mutations to nonsense-mediated mRNA decay in long QT syndrome.

Authors:  Qiuming Gong; Matthew R Stump; Zhengfeng Zhou
Journal:  Gene       Date:  2014-02-13       Impact factor: 3.688

10.  Long QT syndrome-associated mutations in intrauterine fetal death.

Authors:  Lia Crotti; David J Tester; Wendy M White; Daniel C Bartos; Roberto Insolia; Alessandra Besana; Jennifer D Kunic; Melissa L Will; Ellyn J Velasco; Jennifer J Bair; Alice Ghidoni; Irene Cetin; Daniel L Van Dyke; Myra J Wick; Brian Brost; Brian P Delisle; Fabio Facchinetti; Alfred L George; Peter J Schwartz; Michael J Ackerman
Journal:  JAMA       Date:  2013-04-10       Impact factor: 56.272

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