Cargando…

KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1

BACKGROUND: Variable expressivity and incomplete penetrance between individuals with identical long QT syndrome (LQTS) causative mutations largely remain unexplained. Founder populations provide a unique opportunity to explore modifying genetic effects. We examined the role of a novel synonymous KCN...

Descripción completa

Detalles Bibliográficos
Autores principales: Kapplinger, Jamie D, Erickson, Anders, Asuri, Sirisha, Tester, David J, McIntosh, Sarah, Kerr, Charles R, Morrison, Julie, Tang, Anthony, Sanatani, Shubhayan, Arbour, Laura, Ackerman, Michael J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5502312/
https://www.ncbi.nlm.nih.gov/pubmed/28264985
http://dx.doi.org/10.1136/jmedgenet-2016-104153
_version_ 1783248931977691136
author Kapplinger, Jamie D
Erickson, Anders
Asuri, Sirisha
Tester, David J
McIntosh, Sarah
Kerr, Charles R
Morrison, Julie
Tang, Anthony
Sanatani, Shubhayan
Arbour, Laura
Ackerman, Michael J
author_facet Kapplinger, Jamie D
Erickson, Anders
Asuri, Sirisha
Tester, David J
McIntosh, Sarah
Kerr, Charles R
Morrison, Julie
Tang, Anthony
Sanatani, Shubhayan
Arbour, Laura
Ackerman, Michael J
author_sort Kapplinger, Jamie D
collection PubMed
description BACKGROUND: Variable expressivity and incomplete penetrance between individuals with identical long QT syndrome (LQTS) causative mutations largely remain unexplained. Founder populations provide a unique opportunity to explore modifying genetic effects. We examined the role of a novel synonymous KCNQ1 p.L353L variant on the splicing of exon 8 and on heart rate corrected QT interval (QTc) in a population known to have a pathogenic LQTS type 1 (LQTS1) causative mutation, p.V205M, in KCNQ1-encoded Kv7.1. METHODS: 419 adults were genotyped for p.V205M, p.L353L and a previously described QTc modifier (KCNH2-p.K897T). Adjusted linear regression determined the effect of each variant on QTc, alone and in combination. In addition, peripheral blood RNA was extracted from three controls and three p.L353L-positive individuals. The mutant transcript levels were assessed via qPCR and normalised to overall KCNQ1 transcript levels to assess the effect on splicing. RESULTS: For women and men, respectively, p.L353L alone conferred a 10.0 (p=0.064) ms and 14.0 (p=0.014) ms increase in QTc and in men only a significant interaction effect in combination with the p.V205M (34.6 ms, p=0.003) resulting in a QTc of ∼500 ms. The mechanism of p.L353L's effect was attributed to approximately threefold increase in exon 8 exclusion resulting in ∼25% mutant transcripts of the total KCNQ1 transcript levels. CONCLUSIONS: Our results provide the first evidence that synonymous variants outside the canonical splice sites in KCNQ1 can alter splicing and clinically impact phenotype. Through this mechanism, we identified that p.L353L can precipitate QT prolongation by itself and produce a clinically relevant interactive effect in conjunction with other LQTS variants.
format Online
Article
Text
id pubmed-5502312
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher BMJ Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-55023122017-07-11 KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1 Kapplinger, Jamie D Erickson, Anders Asuri, Sirisha Tester, David J McIntosh, Sarah Kerr, Charles R Morrison, Julie Tang, Anthony Sanatani, Shubhayan Arbour, Laura Ackerman, Michael J J Med Genet Genotype-Phenotype Correlations BACKGROUND: Variable expressivity and incomplete penetrance between individuals with identical long QT syndrome (LQTS) causative mutations largely remain unexplained. Founder populations provide a unique opportunity to explore modifying genetic effects. We examined the role of a novel synonymous KCNQ1 p.L353L variant on the splicing of exon 8 and on heart rate corrected QT interval (QTc) in a population known to have a pathogenic LQTS type 1 (LQTS1) causative mutation, p.V205M, in KCNQ1-encoded Kv7.1. METHODS: 419 adults were genotyped for p.V205M, p.L353L and a previously described QTc modifier (KCNH2-p.K897T). Adjusted linear regression determined the effect of each variant on QTc, alone and in combination. In addition, peripheral blood RNA was extracted from three controls and three p.L353L-positive individuals. The mutant transcript levels were assessed via qPCR and normalised to overall KCNQ1 transcript levels to assess the effect on splicing. RESULTS: For women and men, respectively, p.L353L alone conferred a 10.0 (p=0.064) ms and 14.0 (p=0.014) ms increase in QTc and in men only a significant interaction effect in combination with the p.V205M (34.6 ms, p=0.003) resulting in a QTc of ∼500 ms. The mechanism of p.L353L's effect was attributed to approximately threefold increase in exon 8 exclusion resulting in ∼25% mutant transcripts of the total KCNQ1 transcript levels. CONCLUSIONS: Our results provide the first evidence that synonymous variants outside the canonical splice sites in KCNQ1 can alter splicing and clinically impact phenotype. Through this mechanism, we identified that p.L353L can precipitate QT prolongation by itself and produce a clinically relevant interactive effect in conjunction with other LQTS variants. BMJ Publishing Group 2017-06 2017-03-06 /pmc/articles/PMC5502312/ /pubmed/28264985 http://dx.doi.org/10.1136/jmedgenet-2016-104153 Text en Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://www.bmj.com/company/products-services/rights-and-licensing/ This is an Open Access article distributed in accordance with the Creative Commons Attribution Non Commercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/4.0/
spellingShingle Genotype-Phenotype Correlations
Kapplinger, Jamie D
Erickson, Anders
Asuri, Sirisha
Tester, David J
McIntosh, Sarah
Kerr, Charles R
Morrison, Julie
Tang, Anthony
Sanatani, Shubhayan
Arbour, Laura
Ackerman, Michael J
KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1
title KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1
title_full KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1
title_fullStr KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1
title_full_unstemmed KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1
title_short KCNQ1 p.L353L affects splicing and modifies the phenotype in a founder population with long QT syndrome type 1
title_sort kcnq1 p.l353l affects splicing and modifies the phenotype in a founder population with long qt syndrome type 1
topic Genotype-Phenotype Correlations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5502312/
https://www.ncbi.nlm.nih.gov/pubmed/28264985
http://dx.doi.org/10.1136/jmedgenet-2016-104153
work_keys_str_mv AT kapplingerjamied kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT ericksonanders kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT asurisirisha kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT testerdavidj kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT mcintoshsarah kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT kerrcharlesr kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT morrisonjulie kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT tanganthony kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT sanatanishubhayan kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT arbourlaura kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1
AT ackermanmichaelj kcnq1pl353laffectssplicingandmodifiesthephenotypeinafounderpopulationwithlongqtsyndrometype1