Mutations in KCNH2 can lead to long QTsyndrome type 2. Variable disease manifestation observed with this channelopathy is associated with the location and type of mutation within the protein, complicating efforts to predict patient risk. Here, we demonstrated phenotypic differences in cardiomyocytes derived from isogenic human induced pluripotent stem cells (hiPSC-CMs) genetically edited to harbor mutations either within the pore or tail region of the ion channel. Electrophysiological analysis confirmed that the mutations prolonged repolarization of the hiPSC-CMs, with differences between the mutations evident in monolayer cultures. Blocking the hERG channel revealed that the pore-loop mutation conferred greater susceptibility to arrhythmic...
Loss-of-function long QT (LQT) mutations inducing LQT1 and LQT2 syndromes have been successfully tra...
There is a need for improved in vitro models of inherited cardiac diseases to better understand basi...
There is a need for improved in vitro models of inherited cardiac diseases to better understand basi...
Mutations in KCNH2 can lead to long QT syndrome type 2. Variable disease manifestation observed with...
While rare mutations in ion channel genes are primarily responsible for inherited cardiac arrhythmia...
Mutations in the HERG gene encoding the potassium ion channel HERG, represent one of the most freque...
One of the main challenges in the clinical management of patients with monogenic cardiac disease pat...
One of the main challenges in the clinical management of patients with monogenic cardiac disease pat...
BACKGROUND: Long QT Syndrome type 2 (LQT2) is caused by mutations in the KCNH2 gene that encodes fo...
Human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CMs) are widely used in studying b...
In a recent Nature paper, Itzhaki et al. (2011) generate induced pluripotent stem cells (iPSCs) from...
AbstractIntroductionLong QT syndrome type 1 (LQT1) is caused by mutations in KCNQ1 coding slowly-act...
In the last decade, there has been tremendous progress in identifying genetic anomalies linked to cl...
none5siLoss-of-function long QT (LQT) mutations inducing LQT1 and LQT2 syndromes have been successfu...
In the last decade, there has been tremendous progress in identifying genetic anomalies linked to cl...
Loss-of-function long QT (LQT) mutations inducing LQT1 and LQT2 syndromes have been successfully tra...
There is a need for improved in vitro models of inherited cardiac diseases to better understand basi...
There is a need for improved in vitro models of inherited cardiac diseases to better understand basi...
Mutations in KCNH2 can lead to long QT syndrome type 2. Variable disease manifestation observed with...
While rare mutations in ion channel genes are primarily responsible for inherited cardiac arrhythmia...
Mutations in the HERG gene encoding the potassium ion channel HERG, represent one of the most freque...
One of the main challenges in the clinical management of patients with monogenic cardiac disease pat...
One of the main challenges in the clinical management of patients with monogenic cardiac disease pat...
BACKGROUND: Long QT Syndrome type 2 (LQT2) is caused by mutations in the KCNH2 gene that encodes fo...
Human induced pluripotent stem cell derived cardiomyocytes (hiPSC-CMs) are widely used in studying b...
In a recent Nature paper, Itzhaki et al. (2011) generate induced pluripotent stem cells (iPSCs) from...
AbstractIntroductionLong QT syndrome type 1 (LQT1) is caused by mutations in KCNQ1 coding slowly-act...
In the last decade, there has been tremendous progress in identifying genetic anomalies linked to cl...
none5siLoss-of-function long QT (LQT) mutations inducing LQT1 and LQT2 syndromes have been successfu...
In the last decade, there has been tremendous progress in identifying genetic anomalies linked to cl...
Loss-of-function long QT (LQT) mutations inducing LQT1 and LQT2 syndromes have been successfully tra...
There is a need for improved in vitro models of inherited cardiac diseases to better understand basi...
There is a need for improved in vitro models of inherited cardiac diseases to better understand basi...