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Genome Editing of Induced Pluripotent Stem Cells to Decipher Cardiac Channelopathy Variant.
Garg, Priyanka; Oikonomopoulos, Angelos; Chen, Haodong; Li, Yingxin; Lam, Chi Keung; Sallam, Karim; Perez, Marco; Lux, Robert L; Sanguinetti, Michael C; Wu, Joseph C.
Afiliação
  • Garg P; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California.
  • Oikonomopoulos A; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California.
  • Chen H; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California.
  • Li Y; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California.
  • Lam CK; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California.
  • Sallam K; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California.
  • Perez M; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California; Center for Inherited Cardiovascular Disease, Division of Cardiovascular Medicine, Stanford University, Stanford, California.
  • Lux RL; Nora Eccles Harrison Cardiovascular Research and Training Institute, University of Utah, Salt Lake City, Utah.
  • Sanguinetti MC; Nora Eccles Harrison Cardiovascular Research and Training Institute, University of Utah, Salt Lake City, Utah; Division of Cardiovascular Medicine, Department of Internal Medicine, University of Utah, Salt Lake City, Utah.
  • Wu JC; Stanford Cardiovascular Institute and Department of Medicine, Division of Cardiology, Stanford University, Stanford, California. Electronic address: joewu@stanford.edu.
J Am Coll Cardiol ; 72(1): 62-75, 2018 07 03.
Article em En | MEDLINE | ID: mdl-29957233
ABSTRACT

BACKGROUND:

The long QT syndrome (LQTS) is an arrhythmogenic disorder of QT interval prolongation that predisposes patients to life-threatening ventricular arrhythmias such as Torsades de pointes and sudden cardiac death. Clinical genetic testing has emerged as the standard of care to identify genetic variants in patients suspected of having LQTS. However, these results are often confounded by the discovery of variants of uncertain significance (VUS), for which there is insufficient evidence of pathogenicity.

OBJECTIVES:

The purpose of this study was to demonstrate that genome editing of patient-specific induced pluripotent stem cells (iPSCs) can be a valuable approach to delineate the pathogenicity of VUS in cardiac channelopathy.

METHODS:

Peripheral blood mononuclear cells were isolated from a carrier with a novel missense variant (T983I) in the KCNH2 (LQT2) gene and an unrelated healthy control subject. iPSCs were generated using an integration-free Sendai virus and differentiated to iPSC-derived cardiomyocytes (CMs).

RESULTS:

Whole-cell patch clamp recordings revealed significant prolongation of the action potential duration (APD) and reduced rapidly activating delayed rectifier K+ current (IKr) density in VUS iPSC-CMs compared with healthy control iPSC-CMs. ICA-105574, a potent IKr activator, enhanced IKr magnitude and restored normal action potential duration in VUS iPSC-CMs. Notably, VUS iPSC-CMs exhibited greater propensity to proarrhythmia than healthy control cells in response to high-risk torsadogenic drugs (dofetilide, ibutilide, and azimilide), suggesting a compromised repolarization reserve. Finally, the selective correction of the causal variant in iPSC-CMs using CRISPR/Cas9 gene editing (isogenic control) normalized the aberrant cellular phenotype, whereas the introduction of the homozygous variant in healthy control cells recapitulated hallmark features of the LQTS disorder.

CONCLUSIONS:

The results suggest that the KCNH2T983I VUS may be classified as potentially pathogenic.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Síndrome do QT Longo / Canalopatias / Células-Tronco Pluripotentes Induzidas / Canal de Potássio ERG1 / Edição de Genes Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Síndrome do QT Longo / Canalopatias / Células-Tronco Pluripotentes Induzidas / Canal de Potássio ERG1 / Edição de Genes Idioma: En Ano de publicação: 2018 Tipo de documento: Article