1999CirculationRequires access

C-terminal HERG Mutations

MyriamBerthet, IsabelleDenjoy, ClaireDonger, LaurenceDemay, HichamHammoude, DidierKlug, EricSchulze-Bahr, PascaleRichard, HaraldFunke, KettySchwartz, PhilippeCoumel, BernardHainque, PascaleGuicheney

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Abstract

Background—The long-QT syndrome (LQTS) is a genetically heterogeneous disease in which 4 genes encoding ion-channel subunits have been identified. Most of the mutations have been determined in the transmembrane domains of the cardiac potassium channel genes KCNQ1 and HERG. In this study, we investigated the 3′ part of HERG for mutations. Methods and Results—New specific primers allowed the amplification of the 3′ part of HERG, the identification of 2 missense mutations, S818L and V822 M, in the putative cyclic nucleotide binding domain, and a 1-bp insertion, 3108+1G. Hypokalemia was a triggering factor for torsade de pointes in 2 of the probands of these families. Lastly, in a large family, a maternally inherited G to A transition was found in the splicing donor consensus site of HERG, 2592+1G-A, and a paternally inherited mutation, A341E, was identified in KCNQ1. The 2 more severely affected sisters bore both mutations. Conclusions—The discovery of mutations in the C-terminal part of HERG emphasizes that...

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Background—The long-QT syndrome (LQTS) is a genetically heterogeneous disease in which 4 genes encoding ion-channel subunits have been identified. Most of the mutations have been determined in the transmembrane domains of the cardiac potassium channel genes KCNQ1 and HERG. In this study, we investigated the 3′ part of HERG for mutations. Methods and Results—New specific primers allowed the amplification of the 3′ part of HERG, the identification of 2 missense mutations, S818L and V822 M, in the putative cyclic nucleotide binding domain, and a 1-bp insertion, 3108+1G. Hypokalemia was a triggering factor for torsade de pointes in 2 of the probands of these families. Lastly, in a large family, a maternally inherited G to A transition was found in the splicing donor consensus site of HERG, 2592+1G-A, and a paternally inherited mutation, A341E, was identified in KCNQ1. The 2 more severely affected sisters bore both mutations. Conclusions—The discovery of mutations in the C-terminal part of HERG emphasizes that...

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Available abstract

Background—The long-QT syndrome (LQTS) is a genetically heterogeneous disease in which 4 genes encoding ion-channel subunits have been identified. Most of the mutations have been determined in the transmembrane domains of the cardiac potassium channel genes KCNQ1 and HERG. In this study, we investigated the 3′ part of HERG for mutations. Methods and Results—New specific primers allowed the amplification of the 3′ part of HERG, the identification of 2 missense mutations, S818L and V822 M, in the putative cyclic nucleotide binding domain, and a 1-bp insertion, 3108+1G. Hypokalemia was a triggering factor for torsade de pointes in 2 of the probands of these families. Lastly, in a large family, a maternally inherited G to A transition was found in the splicing donor consensus site of HERG, 2592+1G-A, and a paternally inherited mutation, A341E, was identified in KCNQ1. The 2 more severely affected sisters bore both mutations. Conclusions—The discovery of mutations in the C-terminal part of HERG emphasizes that...

Key concepts: hERG, Long QT syndrome, Genetics, Short QT syndrome, Mutation, Missense mutation, Medicine, Gene

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