KCNH2 encodes a nuclear-targeted polypeptide that mediates hERG1 channel gating and expression
Jain, A.; Stack, O.; Ghodrati, S.; Sanchez-Conde, F. G.; Ukachukwu, C.; Salwi, S.; Jimenez-Vazquez, E. N.; Jones, D. K.
Show abstract
KCNH2 encodes hERG1, the voltage-gated potassium channel that conducts the rapid delayed rectifier potassium current (IKr) in human cardiac tissue. hERG1 is one of the first channels expressed during early cardiac development, and its dysfunction is associated with intrauterine fetal death, sudden infant death syndrome, cardiac arrhythmia, and sudden cardiac death. Here, we identified a novel hERG1 polypeptide (hERG1NP) that is targeted to the nuclei of immature cardiac cells, including hiPSC-CMs and neonatal rat cardiomyocytes. The nuclear hERG1NP immunofluorescent signal is diminished in matured hiPSC-CMs and absent from adult rat cardiomyocytes. Antibodies targeting distinct hERG1 channel epitopes demonstrated that the hERG1NP signal maps to the hERG1 distal C-terminal domain. KCNH2 deletion using CRISPR simultaneously abolished IKr and the hERG1NP signal in hiPSC-CMs. We then identified a putative nuclear localization sequence (NLS) within the distal hERG1 C-terminus, 883-RQRKRKLSFR-892. Interestingly, the distal C-terminal domain was targeted almost exclusively to the nuclei when overexpressed HEK293 cells. Conversely, deleting the NLS from the distal peptide abolished nuclear targeting. Similarly, blocking or {beta}1 karyopherin activity diminished nuclear targeting. Finally, overexpressing the putative hERG1NP peptide in the nuclei of HEK cells significantly reduced hERG1a current density, compared to cells expressing the NLS-deficient hERG1NP or GFP. These data identify a developmentally regulated polypeptide encoded by KCNH2, hERG1NP, whose presence in the nucleus indirectly modulates hERG1 current magnitude and kinetics.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Viral expression of a SERCA2a-activating PLB mutant improves calcium cycling and synchronicity in dilated cardiomyopathic hiPSC-CMs 96%
- Molecular mechanisms of altered contraction with the β-myosin R403Q mutation in porcine ventricular muscle and a human stem cell-derived cardiomyocyte model. 95%
- Misoprostol Attenuates Cardiomyocyte Proliferation in the Neonatal Heart Through Bnip3 and Perinuclear Calcium Signaling 94%
Similar papers in this journal
Similar papers in this journal
- Dilated cardiomyopathy-associated skeletal muscle actin (ACTA1) mutation R256H disrupts actin structure and function and causes cardiomyocyte hypocontractility 94%
- Bi-directional flow of the funny current (If) during the pacemaking cycle in murine sinoatrial node myocytes 94%
- Modulating the voltage sensor of a cardiac potassium channel shows antiarrhythmic effects 93%
Similar papers in this journal
- Coordinated Tbx3/Tbx5 transcriptional control of the adult ventricular conduction system 95%
- Direct activation of RA signaling in cardiomyocytes protects hearts from apoptosis after myocardial infarction in mice 95%
- In vivo proximity labeling identifies cardiomyocyte protein networks during zebrafish heart regeneration 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.