Cargando…

Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation

Mutations in the hyperpolarization-activated nucleotide-gated channel 4 (HCN4) are known to be associated with arrhythmias in which QT prolongation (delayed ventricular repolarization) is rare. Here, we identified a HCN4 mutation, HCN4-R666Q, in two sporadic arrhythmia patients with sinus bradycardi...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Hongrui, Wu, Tong, Huang, Zhuo, Huang, Jinghan, Geng, Ze, Cui, Bing, Yan, Yupeng, Zhang, Yu, Wang, Yibo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9663530/
https://www.ncbi.nlm.nih.gov/pubmed/36244448
http://dx.doi.org/10.1016/j.jbc.2022.102599
_version_ 1784830899345424384
author Wang, Hongrui
Wu, Tong
Huang, Zhuo
Huang, Jinghan
Geng, Ze
Cui, Bing
Yan, Yupeng
Zhang, Yu
Wang, Yibo
author_facet Wang, Hongrui
Wu, Tong
Huang, Zhuo
Huang, Jinghan
Geng, Ze
Cui, Bing
Yan, Yupeng
Zhang, Yu
Wang, Yibo
author_sort Wang, Hongrui
collection PubMed
description Mutations in the hyperpolarization-activated nucleotide-gated channel 4 (HCN4) are known to be associated with arrhythmias in which QT prolongation (delayed ventricular repolarization) is rare. Here, we identified a HCN4 mutation, HCN4-R666Q, in two sporadic arrhythmia patients with sinus bradycardia, QT prolongation, and short bursts of ventricular tachycardia. To determine the functional effect of the mutation, we conducted clinical, genetic, and functional analyses using whole-cell voltage-clamp, qPCR, Western blot, confocal microscopy, and co-immunoprecipitation. The mean current density of HEK293T cells transfected with HCN4-R666Q was lower in 24 to 36 h after transfection and was much lower in 36 to 48 h after transfection relative to cells transfected with wildtype HCN4. Additionally, we determined that the HCN4-R666Q mutant was more susceptible to ubiquitin-proteasome system–mediated protein degradation than wildtype HCN4. This decreased current density for HCN4-R666Q could be partly rescued by treatment with a proteasome inhibitor. Therefore, we conclude that HCN4-R666Q had an effect on HCN4 function in two aspects, including decreasing the current density of the channel as a biophysical effect and weakening its protein stability. Our findings provide new insights into the pathogenesis of the HCN4-R666Q mutation.
format Online
Article
Text
id pubmed-9663530
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-96635302022-11-14 Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation Wang, Hongrui Wu, Tong Huang, Zhuo Huang, Jinghan Geng, Ze Cui, Bing Yan, Yupeng Zhang, Yu Wang, Yibo J Biol Chem Research Article Mutations in the hyperpolarization-activated nucleotide-gated channel 4 (HCN4) are known to be associated with arrhythmias in which QT prolongation (delayed ventricular repolarization) is rare. Here, we identified a HCN4 mutation, HCN4-R666Q, in two sporadic arrhythmia patients with sinus bradycardia, QT prolongation, and short bursts of ventricular tachycardia. To determine the functional effect of the mutation, we conducted clinical, genetic, and functional analyses using whole-cell voltage-clamp, qPCR, Western blot, confocal microscopy, and co-immunoprecipitation. The mean current density of HEK293T cells transfected with HCN4-R666Q was lower in 24 to 36 h after transfection and was much lower in 36 to 48 h after transfection relative to cells transfected with wildtype HCN4. Additionally, we determined that the HCN4-R666Q mutant was more susceptible to ubiquitin-proteasome system–mediated protein degradation than wildtype HCN4. This decreased current density for HCN4-R666Q could be partly rescued by treatment with a proteasome inhibitor. Therefore, we conclude that HCN4-R666Q had an effect on HCN4 function in two aspects, including decreasing the current density of the channel as a biophysical effect and weakening its protein stability. Our findings provide new insights into the pathogenesis of the HCN4-R666Q mutation. American Society for Biochemistry and Molecular Biology 2022-10-14 /pmc/articles/PMC9663530/ /pubmed/36244448 http://dx.doi.org/10.1016/j.jbc.2022.102599 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Wang, Hongrui
Wu, Tong
Huang, Zhuo
Huang, Jinghan
Geng, Ze
Cui, Bing
Yan, Yupeng
Zhang, Yu
Wang, Yibo
Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
title Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
title_full Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
title_fullStr Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
title_full_unstemmed Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
title_short Channel HCN4 mutation R666Q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
title_sort channel hcn4 mutation r666q associated with sporadic arrhythmia decreases channel electrophysiological function and increases protein degradation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9663530/
https://www.ncbi.nlm.nih.gov/pubmed/36244448
http://dx.doi.org/10.1016/j.jbc.2022.102599
work_keys_str_mv AT wanghongrui channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT wutong channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT huangzhuo channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT huangjinghan channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT gengze channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT cuibing channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT yanyupeng channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT zhangyu channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation
AT wangyibo channelhcn4mutationr666qassociatedwithsporadicarrhythmiadecreaseschannelelectrophysiologicalfunctionandincreasesproteindegradation