Literature DB >> 23631727

An LQTS6 MiRP1 mutation suppresses pacemaker current and is associated with sinus bradycardia.

Pooja A Nawathe1, Yelena Kryukova, Ronit V Oren, Raffaella Milanesi, Colleen E Clancy, Jonathan T Lu, Arthur J Moss, Dario Difrancesco, Richard B Robinson.   

Abstract

BACKGROUND: Sinus node (SN) dysfunction is observed in some long-QT syndrome (LQTS) patients, but has not been studied as a function of LQTS genotype. LQTS6 involves mutations in the hERG β-subunit MiRP1, which also interacts with hyperpolarization-activated, cyclic nucleotide gated (HCN) channels-the molecular correlate of SN pacemaker current (If ). An LQTS registry search identified a 55-year male with M54T MiRP1 mutation, history of sinus bradycardia (39-56 bpm), and prolonged QTc.
OBJECTIVE: We tested if LQTS6 incorporates sinus bradycardia due to abnormal If .
METHODS: We transiently co-transfected neonatal rat ventricular myocytes (to study currents in a myocyte background) with human HCN4 (hHCN4, primary SN isoform) or human HCN2 (hHCN2) and one of the following: empty vector, wild-type hMiRP1 (WT), M54T hMiRP1 (M54T). Current amplitude, voltage dependence, and kinetics were measured by whole cell patch clamp.
RESULTS: M54T co-expression decreased HCN4 current density by 80% compared to hHCN4 alone or with WT, and also slowed HCN4 activation at physiologically relevant voltages. Neither WT nor M54T altered HCN4 voltage dependence. A computer simulation predicts that these changes in HCN4 current would decrease rate and be additive with published effects of M54T mutation on hERG kinetics on rate.
CONCLUSIONS: We conclude that M54T LQTS6 mutation can cause sinus bradycardia through effects on both hERG and HCN currents. Patients with other LQTS6 mutations should be examined for SN dysfunction, and the effect on HCN current determined.
© 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  HCN2; HCN4; KCNE2; M54T mutation; MiRP1; long-QT syndrome 6; pacemaker current; sinus bradycardia; sinus node dysfunction

Mesh:

Substances:

Year:  2013        PMID: 23631727      PMCID: PMC4059362          DOI: 10.1111/jce.12163

Source DB:  PubMed          Journal:  J Cardiovasc Electrophysiol        ISSN: 1045-3873


  39 in total

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6.  Maintained differentiation in rat cardiac monolayer cultures: tetrodotoxin sensitivity and ultrastructure.

Authors:  R B Robinson; M J Legato
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7.  MiRP1 modulates HCN2 channel expression and gating in cardiac myocytes.

Authors:  Jihong Qu; Yelena Kryukova; Irina A Potapova; Sergey V Doronin; Michael Larsen; Ganga Krishnamurthy; Ira S Cohen; Richard B Robinson
Journal:  J Biol Chem       Date:  2004-08-02       Impact factor: 5.157

8.  Mutant MiRP1 subunits modulate HERG K+ channel gating: a mechanism for pro-arrhythmia in long QT syndrome type 6.

Authors:  Yu Lu; Martyn P Mahaut-Smith; Christopher L-H Huang; Jamie I Vandenberg
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9.  Functional comparison of HCN isoforms expressed in ventricular and HEK 293 cells.

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Review 10.  From funny current to HCN channels: 20 years of excitation.

Authors:  E A Accili; C Proenza; M Baruscotti; D DiFrancesco
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  17 in total

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Review 5.  Molecular Pathophysiology of Congenital Long QT Syndrome.

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Review 6.  Regulation of HCN Channels by Protein Interactions.

Authors:  Colin H Peters; Rohit K Singh; John R Bankston; Catherine Proenza
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7.  HCN4, Sinus Bradycardia and Atrial Fibrillation.

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8.  Dysfunctional HCN ion channels in neurological diseases.

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Review 9.  Pacemaker activity of the human sinoatrial node: an update on the effects of mutations in HCN4 on the hyperpolarization-activated current.

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10.  Genetic analysis of Iranian family with hereditary cardiac arrhythmias by next generation sequencing.

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