The role of DNA methylation in syndromic and non-syndromic congenital heart disease

被引:41
作者
Cao, Jiali [1 ]
Wu, Qichang [2 ]
Huang, Yanru [3 ]
Wang, Lingye [4 ]
Su, Zhiying [2 ]
Ye, Huiming [1 ,4 ]
机构
[1] Xiamen Univ, Women & Childrens Hosp, Sch Med, Dept Clin Lab, Xiamen 361003, Peoples R China
[2] Xiamen Univ, Women & Childrens Hosp, Sch Med, Prenatal Diag Ctr, Xiamen 361003, Fujian, Peoples R China
[3] Xiamen Univ, Sch Med, United Diagnost & Res Ctr Clin Genet, Xiamen 361102, Fujian, Peoples R China
[4] Xiamen Univ, Sch Publ Hlth, Xiamen 361102, Peoples R China
关键词
Congenital heart disease; DNA methylation; Genome methylation level; Differentially methylated regions; Maternal factors; OUTLET RIGHT VENTRICLE; CARDIAC DEVELOPMENT; CHROMOSOMAL-ABNORMALITIES; EPIGENETIC MODIFICATIONS; SEQUENCE VARIATIONS; MAMMALIAN HEART; GENE-EXPRESSION; MUTATIONS; DEFECTS; CITED2;
D O I
10.1186/s13148-021-01077-7
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Congenital heart disease (CHD) is a common structural birth defect worldwide, and defects typically occur in the walls and valves of the heart or enlarged blood vessels. Chromosomal abnormalities and genetic mutations only account for a small portion of the pathogenic mechanisms of CHD, and the etiology of most cases remains unknown. The role of epigenetics in various diseases, including CHD, has attracted increased attention. The contributions of DNA methylation, one of the most important epigenetic modifications, to CHD have not been illuminated. Increasing evidence suggests that aberrant DNA methylation is related to CHD. Here, we briefly introduce DNA methylation and CHD and then review the DNA methylation profiles during cardiac development and in CHD, abnormalities in maternal genome-wide DNA methylation patterns are also described. Whole genome methylation profile and important differentially methylated genes identified in recent years are summarized and clustered according to the sample type and methodologies. Finally, we discuss the novel technology for and prospects of CHD-related DNA methylation.
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页数:18
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共 155 条
[1]   Low fruit consumption and folate deficiency are associated with LINE-1 hypomethylation in women of a cancer-free population [J].
Agodi, Antonella ;
Barchitta, Martina ;
Quattrocchi, Annalisa ;
Maugeri, Andrea ;
Canto, Carolina ;
Marchese, Anna Elisa ;
Vinciguerra, Manlio .
GENES AND NUTRITION, 2015, 10 (05)
[2]   Prenatal diagnosis of nonsyndromic congenital heart defects [J].
Ailes, Elizabeth C. ;
Gilboa, Suzanne M. ;
Riehle-Colarusso, Tiffany ;
Johnson, Candice Y. ;
Hobbs, Charlotte A. ;
Correa, Adolfo ;
Honein, Margaret A. .
PRENATAL DIAGNOSIS, 2014, 34 (03) :214-222
[3]   Rare Variants in NR2F2 Cause Congenital Heart Defects in Humans [J].
Al Turki, Saeed ;
Manickaraj, Ashok K. ;
Mercer, Catherine L. ;
Gerety, Sebastian S. ;
Hitz, Marc-Phillip ;
Lindsay, Sarah ;
D'Alessandro, Lisa C. A. ;
Swaminathan, G. Jawahar ;
Bentham, Jamie ;
Arndt, Anne-Karin ;
Low, Jacoba ;
Breckpot, Jeroen ;
Gewillig, Marc ;
Thienpont, Bernard ;
Abdul-Khaliq, Hashim ;
Harnack, Christine ;
Hoff, Kirstin ;
Kramer, Hans-Heiner ;
Schubert, Stephan ;
Siebert, Reiner ;
Toka, Okan ;
Cosgrove, Catherine ;
Watkins, Hugh ;
Lucassen, Anneke M. ;
O'Kelly, Ita M. ;
Salmon, Anthony P. ;
Bu'Lock, Frances A. ;
Granados-Riveron, Javier ;
Setchfield, Kerry ;
Thornborough, Chris ;
Brook, J. David ;
Mulder, Barbara ;
Klaassen, Sabine ;
Bhattacharya, Shoumo ;
Devriendt, Koen ;
FitzPatrick, David F. ;
Wilson, David I. ;
Mital, Seema ;
Hurles, Matthew E. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2014, 94 (04) :574-585
[4]   Of mice and men: molecular genetics of congenital heart disease [J].
Andersen, Troels Askhoj ;
Troelsen, Karin de Linde Lind ;
Larsen, Lars Allan .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2014, 71 (08) :1327-1352
[5]   Development and Morphology of the Ventricular Outflow Tracts [J].
Anderson, Robert H. ;
Mori, Shumpei ;
Spicer, Diane E. ;
Brown, Nigel A. ;
Mohun, Timothy J. .
WORLD JOURNAL FOR PEDIATRIC AND CONGENITAL HEART SURGERY, 2016, 7 (05) :561-577
[6]   Hypomethylation of Intragenic LINE-1 Represses Transcription in Cancer Cells through AGO2 [J].
Aporntewan, Chatchawit ;
Phokaew, Chureerat ;
Piriyapongsa, Jittima ;
Ngamphiw, Chumpol ;
Ittiwut, Chupong ;
Tongsima, Sissades ;
Mutirangura, Apiwat .
PLOS ONE, 2011, 6 (03)
[7]   Exome Analysis of a Family With Pleiotropic Congenital Heart Disease [J].
Arrington, Cammon B. ;
Bleyl, Steven B. ;
Matsunami, Norisada ;
Bonnell, Gabriel D. ;
Otterud, Brith E. M. ;
Nielsen, Douglas C. ;
Stevens, Jeffrey ;
Levy, Shawn ;
Leppert, Mark F. ;
Bowles, Neil E. .
CIRCULATION-CARDIOVASCULAR GENETICS, 2012, 5 (02) :175-182
[8]   Altered LINE-1 Methylation in Mothers of Children with Down Syndrome [J].
Babic Bozovic, Ivana ;
Stankovic, Aleksandra ;
Zivkovic, Maja ;
Vranekovic, Jadranka ;
Kapovic, Miljenko ;
Brajenovic-Milic, Bojana .
PLOS ONE, 2015, 10 (05)
[9]   Placental DNA methylation changes in detection of tetralogy of Fallot [J].
Bahado-Singh, R. ;
Vishweswaraiah, S. ;
Mishra, N. K. ;
Guda, C. ;
Radhakrishna, U. .
ULTRASOUND IN OBSTETRICS & GYNECOLOGY, 2020, 55 (06) :768-775
[10]   Precision cardiovascular medicine: artificial intelligence and epigenetics for the pathogenesis and prediction of coarctation in neonates [J].
Bahado-Singh, Ray O. ;
Vishweswaraiah, Sangeetha ;
Aydas, Buket ;
Yilmaz, Ali ;
Saiyed, Nazia M. ;
Mishra, Nitish K. ;
Guda, Chittibabu ;
Radhakrishna, Uppala .
JOURNAL OF MATERNAL-FETAL & NEONATAL MEDICINE, 2022, 35 (03) :457-464