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Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation

The sodium voltage-gated channel beta subunit 3 (SCN3B) plays a crucial role in electrically excitable cells and conduction tissue in the heart. Some previous studies have established that genetic modification in sodium voltage-channel genes encoding for the cardiac β-subunits, such as SCN1B, SCN2B,...

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Autores principales: Lin, Liyan, Li, Ke, Tian, Beijia, Jia, Mengru, Wang, Qianyan, Xu, Chengqi, Xiong, Liang, Wang, Qing, Zeng, Yali, Wang, Pengyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698146/
https://www.ncbi.nlm.nih.gov/pubmed/36362949
http://dx.doi.org/10.3390/life12111794
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author Lin, Liyan
Li, Ke
Tian, Beijia
Jia, Mengru
Wang, Qianyan
Xu, Chengqi
Xiong, Liang
Wang, Qing
Zeng, Yali
Wang, Pengyun
author_facet Lin, Liyan
Li, Ke
Tian, Beijia
Jia, Mengru
Wang, Qianyan
Xu, Chengqi
Xiong, Liang
Wang, Qing
Zeng, Yali
Wang, Pengyun
author_sort Lin, Liyan
collection PubMed
description The sodium voltage-gated channel beta subunit 3 (SCN3B) plays a crucial role in electrically excitable cells and conduction tissue in the heart. Some previous studies have established that genetic modification in sodium voltage-channel genes encoding for the cardiac β-subunits, such as SCN1B, SCN2B, SCN3B and SCN4B, can result in atrial fibrillation (AF). In the current study, we identified two rare variants in 5′UTR (NM_018400.4: c.-324C>A, rs976125894 and NM_018400.4: c.-303C>T, rs1284768362) of SCN3B in two unrelated lone AF patients. Our further functional studies discovered that one of them, the A allele of c.-324C>A (rs976125894), can improve transcriptional activity and may raise SCN3B expression levels. The A allele of c.-324C>A (rs976125894) has higher transcriptional activity when it interacts with GATA4, as we confirmed transcription factor GATA4 is a regulator of SCN3B. To the best of our knowledge, the current study is the first to demonstrate that the gain-of-function mutation of SCN3B can produce AF and the first to link a mutation occurring in the non-coding 5′UTR region of SCN3B to lone AF. The work also offers empirical proof that GATA4 is a critical regulator of SCN3B gene regulation. Our findings may serve as an encyclopedia for AF susceptibility variants and can also provide insight into the investigation of the functional mechanisms behind AF variants discovered by genetic methods.
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spelling pubmed-96981462022-11-26 Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation Lin, Liyan Li, Ke Tian, Beijia Jia, Mengru Wang, Qianyan Xu, Chengqi Xiong, Liang Wang, Qing Zeng, Yali Wang, Pengyun Life (Basel) Article The sodium voltage-gated channel beta subunit 3 (SCN3B) plays a crucial role in electrically excitable cells and conduction tissue in the heart. Some previous studies have established that genetic modification in sodium voltage-channel genes encoding for the cardiac β-subunits, such as SCN1B, SCN2B, SCN3B and SCN4B, can result in atrial fibrillation (AF). In the current study, we identified two rare variants in 5′UTR (NM_018400.4: c.-324C>A, rs976125894 and NM_018400.4: c.-303C>T, rs1284768362) of SCN3B in two unrelated lone AF patients. Our further functional studies discovered that one of them, the A allele of c.-324C>A (rs976125894), can improve transcriptional activity and may raise SCN3B expression levels. The A allele of c.-324C>A (rs976125894) has higher transcriptional activity when it interacts with GATA4, as we confirmed transcription factor GATA4 is a regulator of SCN3B. To the best of our knowledge, the current study is the first to demonstrate that the gain-of-function mutation of SCN3B can produce AF and the first to link a mutation occurring in the non-coding 5′UTR region of SCN3B to lone AF. The work also offers empirical proof that GATA4 is a critical regulator of SCN3B gene regulation. Our findings may serve as an encyclopedia for AF susceptibility variants and can also provide insight into the investigation of the functional mechanisms behind AF variants discovered by genetic methods. MDPI 2022-11-05 /pmc/articles/PMC9698146/ /pubmed/36362949 http://dx.doi.org/10.3390/life12111794 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lin, Liyan
Li, Ke
Tian, Beijia
Jia, Mengru
Wang, Qianyan
Xu, Chengqi
Xiong, Liang
Wang, Qing
Zeng, Yali
Wang, Pengyun
Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation
title Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation
title_full Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation
title_fullStr Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation
title_full_unstemmed Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation
title_short Two Novel Functional Mutations in Promoter Region of SCN3B Gene Associated with Atrial Fibrillation
title_sort two novel functional mutations in promoter region of scn3b gene associated with atrial fibrillation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9698146/
https://www.ncbi.nlm.nih.gov/pubmed/36362949
http://dx.doi.org/10.3390/life12111794
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