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Published in: Basic Research in Cardiology 3/2013

01-05-2013 | Original Contribution

Non dominant-negative KCNJ2 gene mutations leading to Andersen-Tawil syndrome with an isolated cardiac phenotype

Authors: Maren M. Limberg, Sven Zumhagen, Michael F. Netter, Alison J. Coffey, Andrew Grace, Jane Rogers, Doris Böckelmann, Susanne Rinné, Birgit Stallmeyer, Niels Decher, Eric Schulze-Bahr

Published in: Basic Research in Cardiology | Issue 3/2013

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Abstract

Andersen-Tawil syndrome (ATS) is characterized by dysmorphic features, periodic paralyses and abnormal ventricular repolarization. After genotyping a large set of patients with congenital long-QT syndrome, we identified two novel, heterozygous KCNJ2 mutations (p.N318S, p.W322C) located in the C-terminus of the Kir2.1 subunit. These mutations have a different localization than classical ATS mutations which are mostly located at a potential interaction face with the slide helix or at the interface between the C-termini. Mutation carriers were without the key features of ATS, causing an isolated cardiac phenotype. While the N318S mutants regularly reached the plasma membrane, W322C mutants primarily resided in late endosomes. Co-expression of N318S or W322C with wild-type Kir2.1 reduced current amplitudes only by 20–25 %. This mild loss-of-function for the heteromeric channels resulted from defective channel trafficking (W322C) or gating (N318S). Strikingly, and in contrast to the majority of ATS mutations, neither mutant caused a dominant-negative suppression of wild-type Kir2.1, Kir2.2 and Kir2.3 currents. Thus, a mild reduction of native Kir2.x currents by non dominant-negative mutants may cause ATS with an isolated cardiac phenotype.
Literature
2.
go back to reference Andelfinger G, Tapper AR, Welch RC, Vanoye CG, George AL, Benson DW (2002) KCNJ2 mutation results in Andersen syndrome with sex-specific cardiac and skeletal muscle phenotypes. Am J Hum Genet 71:663–668. doi:10.1086/342360 CrossRefPubMed Andelfinger G, Tapper AR, Welch RC, Vanoye CG, George AL, Benson DW (2002) KCNJ2 mutation results in Andersen syndrome with sex-specific cardiac and skeletal muscle phenotypes. Am J Hum Genet 71:663–668. doi:10.​1086/​342360 CrossRefPubMed
3.
go back to reference Ballester LY, Benson DW, Wong B, Law IH, Mathews KD, Vanoye CG, George AL (2006) Trafficking-competent and trafficking-defective KCNJ2 mutations in Andersen syndrome. Hum Mutat 27:388. doi:10.1002/humu.9418 CrossRefPubMed Ballester LY, Benson DW, Wong B, Law IH, Mathews KD, Vanoye CG, George AL (2006) Trafficking-competent and trafficking-defective KCNJ2 mutations in Andersen syndrome. Hum Mutat 27:388. doi:10.​1002/​humu.​9418 CrossRefPubMed
4.
go back to reference Barsheshet A, Goldenberg I, O-Uchi J, Moss AJ, Jons C, Shimizu W, Wilde AA, McNitt S, Peterson DR, Zareba W, Robinson JL, Ackerman MJ, Cypress M, Gray DA, Hofman N, Kanters JK, Kaufman ES, Platonov PG, Qi M, Towbin JA, Vincent GM, Lopes CM (2012) Mutations in cytoplasmic loops of the KCNQ1 channel and the risk of life-threatening events: implications for mutation-specific response to beta-blocker therapy in type 1 long-QT syndrome. Circulation 125:1988–1996. doi:10.1161/CIRCULATIONAHA.111.048041 CrossRefPubMed Barsheshet A, Goldenberg I, O-Uchi J, Moss AJ, Jons C, Shimizu W, Wilde AA, McNitt S, Peterson DR, Zareba W, Robinson JL, Ackerman MJ, Cypress M, Gray DA, Hofman N, Kanters JK, Kaufman ES, Platonov PG, Qi M, Towbin JA, Vincent GM, Lopes CM (2012) Mutations in cytoplasmic loops of the KCNQ1 channel and the risk of life-threatening events: implications for mutation-specific response to beta-blocker therapy in type 1 long-QT syndrome. Circulation 125:1988–1996. doi:10.​1161/​CIRCULATIONAHA.​111.​048041 CrossRefPubMed
5.
6.
8.
go back to reference Davies NP, Imbrici P, Fialho D, Herd C, Bilsland LG, Weber A, Mueller R, Hilton-Jones D, Ealing J, Boothman BR, Giunti P, Parsons LM, Thomas M, Manzur AY, Jurkat-Rott K, Lehmann-Horn F, Chinnery PF, Rose M, Kullmann DM, Hanna MG (2005) Andersen-Tawil syndrome: new potassium channel mutations and possible phenotypic variation. Neurology 65:1083–1089. doi:10.1212/01.wnl.0000178888.03767.74 CrossRefPubMed Davies NP, Imbrici P, Fialho D, Herd C, Bilsland LG, Weber A, Mueller R, Hilton-Jones D, Ealing J, Boothman BR, Giunti P, Parsons LM, Thomas M, Manzur AY, Jurkat-Rott K, Lehmann-Horn F, Chinnery PF, Rose M, Kullmann DM, Hanna MG (2005) Andersen-Tawil syndrome: new potassium channel mutations and possible phenotypic variation. Neurology 65:1083–1089. doi:10.​1212/​01.​wnl.​0000178888.​03767.​74 CrossRefPubMed
9.
go back to reference Decher N, Renigunta V, Zuzarte M, Soom M, Heinemann SH, Timothy KW, Keating MT, Daut J, Sanguinetti MC, Splawski I (2007) Impaired interaction between the slide helix and the C-terminus of Kir2.1: a novel mechanism of Andersen syndrome. Cardiovasc Res 75:748–757. doi:10.1016/j.cardiores.2007.05.010 CrossRefPubMed Decher N, Renigunta V, Zuzarte M, Soom M, Heinemann SH, Timothy KW, Keating MT, Daut J, Sanguinetti MC, Splawski I (2007) Impaired interaction between the slide helix and the C-terminus of Kir2.1: a novel mechanism of Andersen syndrome. Cardiovasc Res 75:748–757. doi:10.​1016/​j.​cardiores.​2007.​05.​010 CrossRefPubMed
10.
go back to reference Doi T, Makiyama T, Morimoto T, Haruna Y, Tsuji K, Ohno S, Akao M, Takahashi Y, Kimura T, Horie M (2011) A novel KCNJ2 nonsense mutation, S369X, impedes trafficking and causes a limited form of Andersen-Tawil syndrome. Circ Cardiovasc Genet 4:253–260. doi:10.1161/CIRCGENETICS.110.958157 CrossRefPubMed Doi T, Makiyama T, Morimoto T, Haruna Y, Tsuji K, Ohno S, Akao M, Takahashi Y, Kimura T, Horie M (2011) A novel KCNJ2 nonsense mutation, S369X, impedes trafficking and causes a limited form of Andersen-Tawil syndrome. Circ Cardiovasc Genet 4:253–260. doi:10.​1161/​CIRCGENETICS.​110.​958157 CrossRefPubMed
11.
go back to reference Donaldson MR, Jensen JL, Tristani-Firouzi M, Tawil R, Bendahhou S, Suarez WA, Cobo AM, Poza JJ, Behr E, Wagstaff J, Szepetowski P, Pereira S, Mozaffar T, Escolar DM, Fu Y-H, Ptácek LJ (2003) PIP2 binding residues of Kir2.1 are common targets of mutations causing Andersen syndrome. Neurology 60:1811–1816. doi:10.1212/01.WNL.0000072261.14060.47 CrossRefPubMed Donaldson MR, Jensen JL, Tristani-Firouzi M, Tawil R, Bendahhou S, Suarez WA, Cobo AM, Poza JJ, Behr E, Wagstaff J, Szepetowski P, Pereira S, Mozaffar T, Escolar DM, Fu Y-H, Ptácek LJ (2003) PIP2 binding residues of Kir2.1 are common targets of mutations causing Andersen syndrome. Neurology 60:1811–1816. doi:10.​1212/​01.​WNL.​0000072261.​14060.​47 CrossRefPubMed
12.
13.
go back to reference Donner BC, Schullenberg M, Geduldig N, Huning A, Mersmann J, Zacharowski K, Kovacevic A, Decking U, Aller MI, Schmidt KG (2011) Functional role of TASK-1 in the heart: studies in TASK-1-deficient mice show prolonged cardiac repolarization and reduced heart rate variability. Basic Res Cardiol 106:75–87. doi:10.1007/s00395-010-0128-x CrossRefPubMed Donner BC, Schullenberg M, Geduldig N, Huning A, Mersmann J, Zacharowski K, Kovacevic A, Decking U, Aller MI, Schmidt KG (2011) Functional role of TASK-1 in the heart: studies in TASK-1-deficient mice show prolonged cardiac repolarization and reduced heart rate variability. Basic Res Cardiol 106:75–87. doi:10.​1007/​s00395-010-0128-x CrossRefPubMed
14.
go back to reference Eckhardt LL, Farley AL, Rodriguez E, Ruwaldt K, Hammill D, Tester DJ, Ackerman MJ, Makielski JC (2007) KCNJ2 mutations in arrhythmia patients referred for LQT testing: a mutation T305A with novel effect on rectification properties. Heart Rhythm 4:323–329. doi:10.1016/j.hrthm.2006.10.025 CrossRefPubMed Eckhardt LL, Farley AL, Rodriguez E, Ruwaldt K, Hammill D, Tester DJ, Ackerman MJ, Makielski JC (2007) KCNJ2 mutations in arrhythmia patients referred for LQT testing: a mutation T305A with novel effect on rectification properties. Heart Rhythm 4:323–329. doi:10.​1016/​j.​hrthm.​2006.​10.​025 CrossRefPubMed
15.
go back to reference Fink M, Duprat F, Heurteaux C, Lesage F, Romey G, Barhanin J, Lazdunski M (1996) Dominant negative chimeras provide evidence for homo and heteromultimeric assembly of inward rectifier K+ channel proteins via their N-terminal end. FEBS Lett 378:64–68. doi:10.1016/0014-5793(95)01388-1 CrossRefPubMed Fink M, Duprat F, Heurteaux C, Lesage F, Romey G, Barhanin J, Lazdunski M (1996) Dominant negative chimeras provide evidence for homo and heteromultimeric assembly of inward rectifier K+ channel proteins via their N-terminal end. FEBS Lett 378:64–68. doi:10.​1016/​0014-5793(95)01388-1 CrossRefPubMed
16.
go back to reference Haruna Y, Kobori A, Makiyama T, Yoshida H, Akao M, Doi T, Tsuji K, Ono S, Nishio Y, Shimizu W, Inoue T, Murakami T, Tsuboi N, Yamanouchi H, Ushinohama H, Nakamura Y, Yoshinaga M, Horigome H, Aizawa Y, Kita T, Horie M (2007) Genotype-phenotype correlations of KCNJ2 mutations in Japanese patients with Andersen-Tawil syndrome. Hum Mutat 28:208. doi:10.1002/humu.9483 CrossRefPubMed Haruna Y, Kobori A, Makiyama T, Yoshida H, Akao M, Doi T, Tsuji K, Ono S, Nishio Y, Shimizu W, Inoue T, Murakami T, Tsuboi N, Yamanouchi H, Ushinohama H, Nakamura Y, Yoshinaga M, Horigome H, Aizawa Y, Kita T, Horie M (2007) Genotype-phenotype correlations of KCNJ2 mutations in Japanese patients with Andersen-Tawil syndrome. Hum Mutat 28:208. doi:10.​1002/​humu.​9483 CrossRefPubMed
17.
go back to reference Hattori T, Makiyama T, Akao M, Ehara E, Ohno S, Iguchi M, Nishio Y, Sasaki K, Itoh H, Yokode M, Kita T, Horie M, Kimura T (2012) A novel gain-of-function KCNJ2 mutation associated with short-QT syndrome impairs inward rectification of Kir2.1 currents. Cardiovasc Res 93:666–673. doi:10.1093/cvr/cvr329 CrossRefPubMed Hattori T, Makiyama T, Akao M, Ehara E, Ohno S, Iguchi M, Nishio Y, Sasaki K, Itoh H, Yokode M, Kita T, Horie M, Kimura T (2012) A novel gain-of-function KCNJ2 mutation associated with short-QT syndrome impairs inward rectification of Kir2.1 currents. Cardiovasc Res 93:666–673. doi:10.​1093/​cvr/​cvr329 CrossRefPubMed
18.
go back to reference Hosaka Y, Hanawa H, Washizuka T, Chinushi M, Yamashita F, Yoshida T, Komura S, Watanabe H, Aizawa Y (2003) Function, subcellular localization and assembly of a novel mutation of KCNJ2 in Andersen’s syndrome. J Mol Cell Cardiol 35:409–415. doi:10.1016/S0022-2828(03)00046-4 CrossRefPubMed Hosaka Y, Hanawa H, Washizuka T, Chinushi M, Yamashita F, Yoshida T, Komura S, Watanabe H, Aizawa Y (2003) Function, subcellular localization and assembly of a novel mutation of KCNJ2 in Andersen’s syndrome. J Mol Cell Cardiol 35:409–415. doi:10.​1016/​S0022-2828(03)00046-4 CrossRefPubMed
19.
go back to reference Kimura H, Zhou J, Kawamura M, Itoh H, Mizusawa Y, Ding WG, Wu J, Ohno S, Makiyama T, Miyamoto A, Naiki N, Wang Q, Xie Y, Suzuki T, Tateno S, Nakamura Y, Zang WJ, Ito M, Matsuura H, Horie M (2012) Phenotype variability in patients carrying KCNJ2 mutations. Circ Cardiovasc Genet 5:344–353. doi:10.1161/CIRCGENETICS.111.962316 CrossRefPubMed Kimura H, Zhou J, Kawamura M, Itoh H, Mizusawa Y, Ding WG, Wu J, Ohno S, Makiyama T, Miyamoto A, Naiki N, Wang Q, Xie Y, Suzuki T, Tateno S, Nakamura Y, Zang WJ, Ito M, Matsuura H, Horie M (2012) Phenotype variability in patients carrying KCNJ2 mutations. Circ Cardiovasc Genet 5:344–353. doi:10.​1161/​CIRCGENETICS.​111.​962316 CrossRefPubMed
20.
go back to reference Liu Y, Sun L, Pan Z, Bai Y, Wang N, Zhao J, Xu C, Li Z, Li B, Du Z, Lu Y, Gao X, Yang B (2011) Overexpression of M3 muscarinic receptor is a novel strategy for preventing sudden cardiac death in transgenic mice. Mol Med 17:1179–1187. doi:10.2119/molmed.2011.00093 PubMed Liu Y, Sun L, Pan Z, Bai Y, Wang N, Zhao J, Xu C, Li Z, Li B, Du Z, Lu Y, Gao X, Yang B (2011) Overexpression of M3 muscarinic receptor is a novel strategy for preventing sudden cardiac death in transgenic mice. Mol Med 17:1179–1187. doi:10.​2119/​molmed.​2011.​00093 PubMed
21.
24.
go back to reference Modoni A, Bianchi ML, Vitulano N, Pagliarani S, Perna F, Sanna T, Rizzo V, Silvestri G (2011) Lack of any cardiac involvement in a patient with Andersen-Tawil syndrome associated with the c.574A→G mutation in KCNJ2. Cardiology 120:200–203. doi:10.1159/000335529 CrossRefPubMed Modoni A, Bianchi ML, Vitulano N, Pagliarani S, Perna F, Sanna T, Rizzo V, Silvestri G (2011) Lack of any cardiac involvement in a patient with Andersen-Tawil syndrome associated with the c.574A→G mutation in KCNJ2. Cardiology 120:200–203. doi:10.​1159/​000335529 CrossRefPubMed
25.
go back to reference Pegan S, Arrabit C, Zhou W, Kwiatkowski W, Collins A, Slesinger PA, Choe S (2005) Cytoplasmic domain structures of Kir2.1 and Kir3.1 show sites for modulating gating and rectification. Nat Neurosci 8:279–287. doi:10.1038/nn1411 CrossRefPubMed Pegan S, Arrabit C, Zhou W, Kwiatkowski W, Collins A, Slesinger PA, Choe S (2005) Cytoplasmic domain structures of Kir2.1 and Kir3.1 show sites for modulating gating and rectification. Nat Neurosci 8:279–287. doi:10.​1038/​nn1411 CrossRefPubMed
26.
go back to reference Plaster NM, Tawil R, Tristani-Firouzi M, Canún S, Bendahhou S, Tsunoda A, Donaldson MR, Iannaccone ST, Brunt E, Barohn R (2001) Mutations in Kir2.1 Cause the Developmental and Episodic Electrical Phenotypes of Andersen’s Syndrome. Cell 105:511–519. doi:10.1016/S0092-8674(01)00342-7 CrossRefPubMed Plaster NM, Tawil R, Tristani-Firouzi M, Canún S, Bendahhou S, Tsunoda A, Donaldson MR, Iannaccone ST, Brunt E, Barohn R (2001) Mutations in Kir2.1 Cause the Developmental and Episodic Electrical Phenotypes of Andersen’s Syndrome. Cell 105:511–519. doi:10.​1016/​S0092-8674(01)00342-7 CrossRefPubMed
27.
go back to reference Preisig-Müller R, Schlichthörl G, Goerge T, Heinen S, Brüggemann A, Rajan S, Derst C, Veh RW, Daut J (2002) Heteromerization of Kir2.x potassium channels contributes to the phenotype of Andersen’s syndrome. Proc Natl Acad Sci USA 99:7774–7779. doi:10.1073/pnas.102609499 CrossRefPubMed Preisig-Müller R, Schlichthörl G, Goerge T, Heinen S, Brüggemann A, Rajan S, Derst C, Veh RW, Daut J (2002) Heteromerization of Kir2.x potassium channels contributes to the phenotype of Andersen’s syndrome. Proc Natl Acad Sci USA 99:7774–7779. doi:10.​1073/​pnas.​102609499 CrossRefPubMed
28.
go back to reference Priori SG, Pandit SV, Rivolta I, Berenfeld O, Ronchetti E, Dhamoon A, Napolitano C, Anumonwo J, di Barletta MR, Gudapakkam S, Bosi G, Stramba-Badiale M, Jalife J (2005) A novel form of short QT syndrome (SQT3) is caused by a mutation in the KCNJ2 gene. Circ Res 96:800–807. doi:10.1161/01.RES.0000162101.76263.8c CrossRefPubMed Priori SG, Pandit SV, Rivolta I, Berenfeld O, Ronchetti E, Dhamoon A, Napolitano C, Anumonwo J, di Barletta MR, Gudapakkam S, Bosi G, Stramba-Badiale M, Jalife J (2005) A novel form of short QT syndrome (SQT3) is caused by a mutation in the KCNJ2 gene. Circ Res 96:800–807. doi:10.​1161/​01.​RES.​0000162101.​76263.​8c CrossRefPubMed
30.
go back to reference Ryan DP, da Silva MR, Soong TW, Fontaine B, Donaldson MR, Kung AW, Jongjaroenprasert W, Liang MC, Khoo DH, Cheah JS, Ho SC, Bernstein HS, Maciel RM, Brown RH Jr, Ptacek LJ (2010) Mutations in potassium channel Kir2.6 cause susceptibility to thyrotoxic hypokalemic periodic paralysis. Cell 140:88–98. doi:10.1016/j.cell.2009.12.024 CrossRefPubMed Ryan DP, da Silva MR, Soong TW, Fontaine B, Donaldson MR, Kung AW, Jongjaroenprasert W, Liang MC, Khoo DH, Cheah JS, Ho SC, Bernstein HS, Maciel RM, Brown RH Jr, Ptacek LJ (2010) Mutations in potassium channel Kir2.6 cause susceptibility to thyrotoxic hypokalemic periodic paralysis. Cell 140:88–98. doi:10.​1016/​j.​cell.​2009.​12.​024 CrossRefPubMed
32.
go back to reference Seebohm G, Strutz-Seebohm N, Ursu ON, Preisig-Müller R, Zuzarte M, Hill EV, Kienitz MC, Bendahhou S, Fauler M, Tapken D, Decher N, Collins A, Jurkat-Rott K, Steinmeyer K, Lehmann-Horn F, Daut J, Tavare JM, Pott L, Bloch W, Lang F (2012) Altered stress stimulation of inward rectifier potassium channels in Andersen-Tawil syndrome. FASEB J 26:513–522. doi:10.1096/fj.11-189126 CrossRefPubMed Seebohm G, Strutz-Seebohm N, Ursu ON, Preisig-Müller R, Zuzarte M, Hill EV, Kienitz MC, Bendahhou S, Fauler M, Tapken D, Decher N, Collins A, Jurkat-Rott K, Steinmeyer K, Lehmann-Horn F, Daut J, Tavare JM, Pott L, Bloch W, Lang F (2012) Altered stress stimulation of inward rectifier potassium channels in Andersen-Tawil syndrome. FASEB J 26:513–522. doi:10.​1096/​fj.​11-189126 CrossRefPubMed
35.
go back to reference Tristani-Firouzi M, Jensen JL, Donaldson MR, Sansone V, Meola G, Hahn A, Bendahhou S, Kwiecinski H, Fidzianska A, Plaster N, Fu Y-H, Ptacek LJ, Tawil R (2002) Functional and clinical characterization of KCNJ2 mutations associated with LQT7 (Andersen syndrome). J Clin Invest 110:381–388. doi:10.1172/JCI15183 PubMed Tristani-Firouzi M, Jensen JL, Donaldson MR, Sansone V, Meola G, Hahn A, Bendahhou S, Kwiecinski H, Fidzianska A, Plaster N, Fu Y-H, Ptacek LJ, Tawil R (2002) Functional and clinical characterization of KCNJ2 mutations associated with LQT7 (Andersen syndrome). J Clin Invest 110:381–388. doi:10.​1172/​JCI15183 PubMed
36.
go back to reference World medical association, American physiological society (2002) Guiding principles for research involving animals and human beings. Am J Physiol Regul Integr Comp Physiol 283:R281–283. doi:10.1152/ajpregu.00279.2002 World medical association, American physiological society (2002) Guiding principles for research involving animals and human beings. Am J Physiol Regul Integr Comp Physiol 283:R281–283. doi:10.​1152/​ajpregu.​00279.​2002
37.
go back to reference Yazawa M, Hsueh B, Jia X, Pasca AM, Bernstein JA, Hallmayer J, Dolmetsch RE (2011) Using induced pluripotent stem cells to investigate cardiac phenotypes in Timothy syndrome. Nature 471:230–234. doi:10.1038/nature09855 CrossRefPubMed Yazawa M, Hsueh B, Jia X, Pasca AM, Bernstein JA, Hallmayer J, Dolmetsch RE (2011) Using induced pluripotent stem cells to investigate cardiac phenotypes in Timothy syndrome. Nature 471:230–234. doi:10.​1038/​nature09855 CrossRefPubMed
Metadata
Title
Non dominant-negative KCNJ2 gene mutations leading to Andersen-Tawil syndrome with an isolated cardiac phenotype
Authors
Maren M. Limberg
Sven Zumhagen
Michael F. Netter
Alison J. Coffey
Andrew Grace
Jane Rogers
Doris Böckelmann
Susanne Rinné
Birgit Stallmeyer
Niels Decher
Eric Schulze-Bahr
Publication date
01-05-2013
Publisher
Springer-Verlag
Published in
Basic Research in Cardiology / Issue 3/2013
Print ISSN: 0300-8428
Electronic ISSN: 1435-1803
DOI
https://doi.org/10.1007/s00395-013-0353-1

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