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Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection

BACKGROUND: Total anomalous pulmonary venous connection (TAPVC) is recognized as a rare congenital heart defect (CHD). With a high mortality rate of approximately 80%, the survival rate and outcomes of TAPVC patients are not satisfactory. However, the genetic aetiology and mechanism of TAPVC remain...

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Autores principales: Shi, Xin, Huang, Tao, Wang, Jing, Liang, Yulai, Gu, Chang, Xu, Yuejuan, Sun, Jing, Lu, Yanan, Sun, Kun, Chen, Sun, Yu, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306349/
https://www.ncbi.nlm.nih.gov/pubmed/30448225
http://dx.doi.org/10.1016/j.ebiom.2018.11.008
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author Shi, Xin
Huang, Tao
Wang, Jing
Liang, Yulai
Gu, Chang
Xu, Yuejuan
Sun, Jing
Lu, Yanan
Sun, Kun
Chen, Sun
Yu, Yu
author_facet Shi, Xin
Huang, Tao
Wang, Jing
Liang, Yulai
Gu, Chang
Xu, Yuejuan
Sun, Jing
Lu, Yanan
Sun, Kun
Chen, Sun
Yu, Yu
author_sort Shi, Xin
collection PubMed
description BACKGROUND: Total anomalous pulmonary venous connection (TAPVC) is recognized as a rare congenital heart defect (CHD). With a high mortality rate of approximately 80%, the survival rate and outcomes of TAPVC patients are not satisfactory. However, the genetic aetiology and mechanism of TAPVC remain elusive. This study aimed to investigate the underlying genomic risks of TAPVC through next-generation sequencing (NGS). METHODS: Rare variants were identified through whole exome sequencing (WES) of 78 sporadic TAPVC cases and 100 healthy controls using Fisher's exact test and gene-based burden test. We then detected candidate gene expression patterns in cells, pulmonary vein tissues, and embryos. Finally, we validated these genes using target sequencing (TS) in another 100 TAPVC cases. FINDINGS: We identified 42 rare variants of 7 genes (CLTCL1, CST3, GXYLT1, HMGA2, SNAI1, VAV2, ZDHHC8) in TAPVC cases compared with controls. These genes were highly expressed in human umbilical vein endothelial cells (HUVECs), mouse pulmonary veins and human embryonic hearts. mRNA levels of these genes in human pulmonary vein samples were significantly different between cases and controls. Through network analysis and expression patterns in zebrafish embryos, we revealed that SNAI1, HMGA2 and VAV2 are the most important genes for TAPVC. INTERPRETATION: Our study identifies novel candidate genes potentially related to TAPVC and elucidates the possible molecular pathogenesis of this rare congenital birth defect. Furthermore, SNAI1, HMGA2 and VAV2 are novel TAPVC candidate genes that have not been reported previously in either humans or animals. FUND: National Natural Science Foundation of China.
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spelling pubmed-63063492018-12-28 Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection Shi, Xin Huang, Tao Wang, Jing Liang, Yulai Gu, Chang Xu, Yuejuan Sun, Jing Lu, Yanan Sun, Kun Chen, Sun Yu, Yu EBioMedicine Research paper BACKGROUND: Total anomalous pulmonary venous connection (TAPVC) is recognized as a rare congenital heart defect (CHD). With a high mortality rate of approximately 80%, the survival rate and outcomes of TAPVC patients are not satisfactory. However, the genetic aetiology and mechanism of TAPVC remain elusive. This study aimed to investigate the underlying genomic risks of TAPVC through next-generation sequencing (NGS). METHODS: Rare variants were identified through whole exome sequencing (WES) of 78 sporadic TAPVC cases and 100 healthy controls using Fisher's exact test and gene-based burden test. We then detected candidate gene expression patterns in cells, pulmonary vein tissues, and embryos. Finally, we validated these genes using target sequencing (TS) in another 100 TAPVC cases. FINDINGS: We identified 42 rare variants of 7 genes (CLTCL1, CST3, GXYLT1, HMGA2, SNAI1, VAV2, ZDHHC8) in TAPVC cases compared with controls. These genes were highly expressed in human umbilical vein endothelial cells (HUVECs), mouse pulmonary veins and human embryonic hearts. mRNA levels of these genes in human pulmonary vein samples were significantly different between cases and controls. Through network analysis and expression patterns in zebrafish embryos, we revealed that SNAI1, HMGA2 and VAV2 are the most important genes for TAPVC. INTERPRETATION: Our study identifies novel candidate genes potentially related to TAPVC and elucidates the possible molecular pathogenesis of this rare congenital birth defect. Furthermore, SNAI1, HMGA2 and VAV2 are novel TAPVC candidate genes that have not been reported previously in either humans or animals. FUND: National Natural Science Foundation of China. Elsevier 2018-11-16 /pmc/articles/PMC6306349/ /pubmed/30448225 http://dx.doi.org/10.1016/j.ebiom.2018.11.008 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Shi, Xin
Huang, Tao
Wang, Jing
Liang, Yulai
Gu, Chang
Xu, Yuejuan
Sun, Jing
Lu, Yanan
Sun, Kun
Chen, Sun
Yu, Yu
Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
title Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
title_full Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
title_fullStr Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
title_full_unstemmed Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
title_short Next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
title_sort next-generation sequencing identifies novel genes with rare variants in total anomalous pulmonary venous connection
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6306349/
https://www.ncbi.nlm.nih.gov/pubmed/30448225
http://dx.doi.org/10.1016/j.ebiom.2018.11.008
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