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Translation reinitiation in c.453delC frameshift mutation of KCNH2 producing functional hERG K<SUP>+</SUP> channels with mild dominant negative effect in the heterozygote patient-derived iPSC cardiomyocytes

Authors
Park, Na KyeongPark, Soon-JungPark, Yun-GwiMoon, Sung-HwanWoo, JoohanKim, Hyun JongKim, Sung JoonChoi, Seong Woo
Issue Date
Jan-2024
Publisher
OXFORD UNIV PRESS
Keywords
long QT syndrome 2; KCNH2; frameshift mutation; translation reinitiation; iPSC-derived cardiomyocyte
Citation
HUMAN MOLECULAR GENETICS, v.33, no.2, pp 110 - 121
Pages
12
Journal Title
HUMAN MOLECULAR GENETICS
Volume
33
Number
2
Start Page
110
End Page
121
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/70209
DOI
10.1093/hmg/ddad165
ISSN
0964-6906
1460-2083
Abstract
The c.453delC (p.Thr152Profs*14) frameshift mutation in KCNH2 is associated with an elevated risk of Long QT syndrome (LQTS) and fatal arrhythmia. Nevertheless, the loss-of-function mechanism underlying this mutation remains unexplored and necessitates an understanding of electrophysiology. To gain insight into the mechanism of the LQT phenotype, we conducted whole-cell patch-clamp and immunoblot assays, utilizing both a heterologous expression system and patient-derived induced pluripotent stem cell-cardiomyocytes (iPSC-CMs) with 453delC-KCNH2. We also explored the site of translational reinitiation by employing LC/MS mass spectrometry. Contrary to the previous assumption of early termination of translation, the findings of this study indicate that the 453delC-KCNH2 leads to an N-terminally truncated hERG channel, a potential from a non-canonical start codon, with diminished expression and reduced current (IhERG). The co-expression with wildtype KCNH2 produced heteromeric hERG channel with mild dominant-negative effect. Additionally, the heterozygote patient-derived iPSC-CMs exhibited prolonged action potential duration and reduced IhERG, which was ameliorated with the use of a hERG activator, PD-118057. The results of our study offer novel insights into the mechanisms involved in congenital LQTS associated with the 453delC mutation of KCNH2. The mutant results in the formation of less functional N-terminal-truncated channels with reduced amount of membrane expression. A hERG activator is capable of correcting abnormalities in both the heterologous expression system and patient-derived iPSC-CMs.
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Moon, Sung-Hwan
대학원 (동물생명공학과.)
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