Selective Targeting of Gain-of-Function KCNQ1 Mutations Predisposing to Atrial Fibrillation

被引:24
|
作者
Campbell, Courtney M. [1 ]
Campbell, Jonathan D. [3 ]
Thompson, Christopher H. [2 ]
Galimberti, Eleonora Savio [2 ]
Darbar, Dawood [1 ,2 ]
Vanoye, Carlos G. [2 ]
George, Alfred L., Jr. [1 ,2 ]
机构
[1] Vanderbilt Univ, Dept Pharmacol, Nashville, TN 37232 USA
[2] Vanderbilt Univ, Dept Med, Nashville, TN 37232 USA
[3] So Methodist Univ, Dept Engn Management Informat & Syst, Dallas, TX 75275 USA
来源
关键词
antiarrhythmic drugs; arrhythmias; cardiac; atrial fibrillation; genetics; potassium channels; RECTIFIER POTASSIUM CHANNEL; TORSADES-DE-POINTES; I-KS; NATURAL-HISTORY; CAUSE JERVELL; K+ CURRENT; SLOW; BLOCKER; RISK; REPOLARIZATION;
D O I
10.1161/CIRCEP.113.000439
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background Atrial fibrillation is the most common sustained cardiac arrhythmia in adults. We hypothesized that gain-of-function KCNQ1 mutations previously associated with familial atrial fibrillation have distinct pharmacological properties that may enable targeted inhibition. Methods and Results Wild-type (WT) KCNQ1 or the familial atrial fibrillation mutation KCNQ1-S140G was heterologously coexpressed with KCNE1 to enable electrophysiological recording of the slow delayed rectifier current (I-Ks) and investigation of pharmacological effects of the I-Ks selective blocker HMR-1556. Coexpression of KCNQ1-S140G with KCNE1 generated potassium currents (S140G-I-Ks) that exhibited greater sensitivity to HMR-1556 than WT-I-Ks. Enhanced HMR-1556 sensitivity was also observed for another gain-of-function atrial fibrillation mutation, KCNQ1-V141M. Heteromeric expression of KCNE1 with both KCNQ1-WT and KCNQ1-S140G generated currents (HET-I-Ks) with gain-of-function features, including larger amplitude, a constitutively active component, hyperpolarized voltage dependence of activation, and extremely slow deactivation. A low concentration of HMR-1556, which had little effect on WT-I-Ks but was capable of inhibiting the mutant channel, reduced both instantaneous and steady state HET-I-Ks to levels that were not significantly different from WT-I-Ks and attenuated use-dependent accumulation of the current. In cultured adult rabbit left atrial myocytes, expression of S140G-I-Ks shortened action potential duration compared with WT-I-Ks. Application of HMR-1556 mitigated S140G-I-Ks-induced action potential duration shortening and did not alter action potential duration in cells expressing WT-I-Ks. Conclusions The enhanced sensitivity of KCNQ1 gain-of-function mutations for HMR-1556 suggests the possibility of selective therapeutic targeting, and, therefore, our data illustrate a potential proof of principle for genotype-specific treatment of this heritable arrhythmia.
引用
收藏
页码:960 / 966
页数:7
相关论文
共 50 条
  • [31] PITX2c gain-of-function mutation associated with atrial fibrillation
    Olesen, M. S.
    Mechakra, A.
    Christophersen, I. C.
    Walter, M.
    Aranega, A.
    Hernandez-Torres, F.
    Nilesen, J. B.
    Ellinor, P. T.
    Chevalier, P.
    Christe, G.
    [J]. EUROPEAN HEART JOURNAL, 2014, 35 : 1035 - 1035
  • [32] De novo KCNQ1 mutation responsible for atrial fibrillation and short QT syndrome in utero
    Hong, K
    Piper , DR
    Diaz-Valdecantos, A
    Brugada, J
    Oliva, A
    Burashnikov, E
    Santos-de-Soto, J
    Grueso-Montero, J
    Diaz-Enfante, E
    Brugada, P
    Sachse, F
    Sanguinetti, MC
    Brugada, R
    [J]. CARDIOVASCULAR RESEARCH, 2005, 68 (03) : 433 - 440
  • [33] Mutation in the S3 segment of KCNQ1 results in familial lone atrial fibrillation
    Das, Saumya
    Makino, Seiko
    Melman, Yonathan F.
    Shea, Marisa A.
    Goyal, Sanjeev B.
    Rosenzweig, Anthony
    MacRae, Calum A.
    Ellinor, Patrick T.
    [J]. HEART RHYTHM, 2009, 6 (08) : 1146 - 1153
  • [34] Direct Evidence that a KCNQ1 Mutation is Linked to Familial Early-onset Atrial Fibrillation
    Bartos, Daniel C.
    Anderson, Jeffrey B.
    Bastiaenen, Rachel
    Johnson, Jonathan N.
    Gollob, Michael H.
    Tester, David J.
    Burgess, Don E.
    Homfray, Tessa
    Behr, Elijah R.
    Ackerman, Michael J.
    Guicheney, Pascale
    Delisle, Brian P.
    [J]. CIRCULATION, 2012, 126 (21)
  • [35] Comprehensive mutation scanning of KCNQ1 in 111 Han Chinese patients with lone atrial fibrillation
    Chen, Lin Y.
    Goh, June M.
    Wong, Raymond C.
    Hsu, Li-Fern
    Foo, David
    Benditt, David G.
    Ling, Lieng H.
    Heng, Chew K.
    [J]. HEART ASIA, 2010, 2 (01) : 126 - 128
  • [36] Gain-of-function mutation in the voltage-gated potassium channel gene KCNQ1 and glucose-stimulated hypoinsulinemia-case report
    Zhang, Jinyi
    Juhl, Christian R.
    Hylten-Cavallius, Louise
    Salling-Olsen, Morten
    Linneberg, Allan
    Holst, Jens Juul
    Hansen, Torben
    Kanters, Jorgen K.
    Torekov, Signe S.
    [J]. BMC ENDOCRINE DISORDERS, 2020, 20 (01)
  • [37] Drosophila Lyra mutations are gain-of-function mutations of senseless
    Nolo, R
    Abbott, LA
    Bellen, HJ
    [J]. GENETICS, 2001, 157 (01) : 307 - 315
  • [38] Gain-of-function mutations in potassium channel subunit KCNE2 associated with early-onset lone atrial fibrillation
    Nielsen, Jonas Bille
    Bentzen, Bo Hjorth
    Olesen, Morten Salling
    David, Jens-Peter
    Olesen, Soren-Peter
    Haunso, Stig
    Svendsen, Jesper Hastrup
    Schmitt, Nicole
    [J]. BIOMARKERS IN MEDICINE, 2014, 8 (04) : 557 - 570
  • [39] High prevalence of novel gain-of-function mutations in KCNA5 in patients with early-onset lone atrial fibrillation
    Christophersen, Ingrid Elisabeth
    Olesen, Morten S.
    Andersen, Martin Nybo
    Liang, Bo
    Haunso, Stig
    Schmitt, Nicole
    Svendsen, Jesper Hastrup
    [J]. CIRCULATION, 2012, 125 (19) : E660 - E660
  • [40] Novel gain-of-function SCN5A mutation responsible for familial atrial fibrillation
    Rutberg, J.
    Lemery, R.
    Lam, B.
    Tang, A. S.
    Birnie, D. H.
    Green, M.
    Huang, H.
    Chahine, M.
    Gollob, M. H.
    [J]. CANADIAN JOURNAL OF CARDIOLOGY, 2007, 23 : 178C - 179C