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Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation

NSUN5, encoding a cytosine-5 RNA methyltransferase and located in the 7q11.23 locus, is a candidate gene for tetralogy of Fallot (TOF). Deletion of the 7q11.23 locus in humans is linked to cardiac outflow tract (OFT) disorders including TOF. We identified four potential pathogenic mutations in the c...

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Autores principales: Wang, Yifeng, Jiang, Tao, Xu, Jiani, Gu, Yayun, Zhou, Yan, Lin, Yuan, Wu, Yifei, Li, Wei, Wang, Cheng, Shen, Bin, Mo, Xuming, Wang, Xiaowei, Zhou, Bin, Ding, Chenyue, Hu, Zhibin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097101/
https://www.ncbi.nlm.nih.gov/pubmed/33968922
http://dx.doi.org/10.3389/fcell.2021.623394
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author Wang, Yifeng
Jiang, Tao
Xu, Jiani
Gu, Yayun
Zhou, Yan
Lin, Yuan
Wu, Yifei
Li, Wei
Wang, Cheng
Shen, Bin
Mo, Xuming
Wang, Xiaowei
Zhou, Bin
Ding, Chenyue
Hu, Zhibin
author_facet Wang, Yifeng
Jiang, Tao
Xu, Jiani
Gu, Yayun
Zhou, Yan
Lin, Yuan
Wu, Yifei
Li, Wei
Wang, Cheng
Shen, Bin
Mo, Xuming
Wang, Xiaowei
Zhou, Bin
Ding, Chenyue
Hu, Zhibin
author_sort Wang, Yifeng
collection PubMed
description NSUN5, encoding a cytosine-5 RNA methyltransferase and located in the 7q11.23 locus, is a candidate gene for tetralogy of Fallot (TOF). Deletion of the 7q11.23 locus in humans is linked to cardiac outflow tract (OFT) disorders including TOF. We identified four potential pathogenic mutations in the coding region of NSUN5 and which were enriched in TOF patients by an association study of 132 TOF patients and 2,000 in-house controls (P = 1.44 × 10(–5)). We then generated a Nsun5 null (Nsun5(–/–)) mouse model to validate the human findings by defining the functions of Nsun5 in OFT morphogenesis. The OFT did not develop properly in the Nsun5 deletion embryonic heart. We found a misalignment of the aorta and septum defects caused by the delayed fusion of the membraneous ventricular spetum as an OFT development delay. This caused OFT development delay in 27 of 64 (42.2%) Nsun5(–/–) mice. Moreover, we also found OFT development delay in 8 of 51 (15.7%) Nsun5(+/–) mice. Further functional experiments showed that the loss of Nsun5 function impaired the 5-methylcytosine (m(5)C) modification and translation efficiency of essential cardiac genes. Nsun5 is required for normal OFT morphogenesis and it regulates the m(5)C modification of essential cardiac genes. Our findings suggest the involvement of NSUN5 in the pathogenesis of TOF.
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spelling pubmed-80971012021-05-06 Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation Wang, Yifeng Jiang, Tao Xu, Jiani Gu, Yayun Zhou, Yan Lin, Yuan Wu, Yifei Li, Wei Wang, Cheng Shen, Bin Mo, Xuming Wang, Xiaowei Zhou, Bin Ding, Chenyue Hu, Zhibin Front Cell Dev Biol Cell and Developmental Biology NSUN5, encoding a cytosine-5 RNA methyltransferase and located in the 7q11.23 locus, is a candidate gene for tetralogy of Fallot (TOF). Deletion of the 7q11.23 locus in humans is linked to cardiac outflow tract (OFT) disorders including TOF. We identified four potential pathogenic mutations in the coding region of NSUN5 and which were enriched in TOF patients by an association study of 132 TOF patients and 2,000 in-house controls (P = 1.44 × 10(–5)). We then generated a Nsun5 null (Nsun5(–/–)) mouse model to validate the human findings by defining the functions of Nsun5 in OFT morphogenesis. The OFT did not develop properly in the Nsun5 deletion embryonic heart. We found a misalignment of the aorta and septum defects caused by the delayed fusion of the membraneous ventricular spetum as an OFT development delay. This caused OFT development delay in 27 of 64 (42.2%) Nsun5(–/–) mice. Moreover, we also found OFT development delay in 8 of 51 (15.7%) Nsun5(+/–) mice. Further functional experiments showed that the loss of Nsun5 function impaired the 5-methylcytosine (m(5)C) modification and translation efficiency of essential cardiac genes. Nsun5 is required for normal OFT morphogenesis and it regulates the m(5)C modification of essential cardiac genes. Our findings suggest the involvement of NSUN5 in the pathogenesis of TOF. Frontiers Media S.A. 2021-04-21 /pmc/articles/PMC8097101/ /pubmed/33968922 http://dx.doi.org/10.3389/fcell.2021.623394 Text en Copyright © 2021 Wang, Jiang, Xu, Gu, Zhou, Lin, Wu, Li, Wang, Shen, Mo, Wang, Zhou, Ding and Hu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cell and Developmental Biology
Wang, Yifeng
Jiang, Tao
Xu, Jiani
Gu, Yayun
Zhou, Yan
Lin, Yuan
Wu, Yifei
Li, Wei
Wang, Cheng
Shen, Bin
Mo, Xuming
Wang, Xiaowei
Zhou, Bin
Ding, Chenyue
Hu, Zhibin
Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation
title Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation
title_full Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation
title_fullStr Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation
title_full_unstemmed Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation
title_short Mutations in RNA Methyltransferase Gene NSUN5 Confer High Risk of Outflow Tract Malformation
title_sort mutations in rna methyltransferase gene nsun5 confer high risk of outflow tract malformation
topic Cell and Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097101/
https://www.ncbi.nlm.nih.gov/pubmed/33968922
http://dx.doi.org/10.3389/fcell.2021.623394
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