Functional genomics and gene-environment interaction highlight the complexity of congenital heart disease caused by Notch pathway variants

Author:

Chapman Gavin12ORCID,Moreau Julie L M1,I P Eddie1ORCID,Szot Justin O1,Iyer Kavitha R1,Shi Hongjun13,Yam Michelle X1,O’Reilly Victoria C1,Enriquez Annabelle1245,Greasby Joelene A1,Alankarage Dimuthu1,Martin Ella M M A1,Hanna Bernadette C6,Edwards Matthew67,Monger Steven1,Blue Gillian M189,Winlaw David S189,Ritchie Helen E10,Grieve Stuart M1112,Giannoulatou Eleni113,Sparrow Duncan B14,Dunwoodie Sally L1213ORCID

Affiliation:

1. Victor Chang Cardiac Research Institute, Sydney, NSW, 2010, Australia

2. Faculty of Medicine, University of New South Wales, Sydney, NSW, 2052, Australia

3. Institute for Basic Medical Sciences, Westlake University, Hangzhou, China

4. Department of Clinical Genetics, The Children’s Hospital at Westmead, Sydney, NSW, 2145, Australia

5. Discipline of Genomic Medicine, Faculty of Medicine and Health, University of Sydney, Sydney, NSW, 2006, Australia

6. Hunter Genetics, John Hunter Hospital, Newcastle, NSW, 2298, Australia

7. Department of Paediatrics, School of Medicine, Western Sydney University, Sydney, NSW, 2560, Australia

8. Kids Heart Research, Heart Centre for Children, The Children’s Hospital at Westmead, Sydney, NSW, 2145, Australia

9. Sydney Medical School, University of Sydney, Sydney, NSW, 2006, Australia

10. School of Medical Sciences, Faculty of Medicine and Health, University of Sydney, Sydney, NSW, 2006, Australia

11. Sydney Translational Imaging Laboratory, Sydney Medical School, University of Sydney, Sydney, NSW, 2006, Australia

12. Department of Radiology, Royal Prince Alfred Hospital, Sydney, NSW, 2050, Australia

13. Faculty of Science, University of New South Wales, Sydney, NSW, 2052, Australia

14. Department of Physiology, Anatomy and Genetics, University of Oxford, Oxford OX1 3PT, United Kingdom

Abstract

Abstract Congenital heart disease (CHD) is the most common birth defect and brings with it significant mortality and morbidity. The application of exome and genome sequencing has greatly improved the rate of genetic diagnosis for CHD but the cause in the majority of cases remains uncertain. It is clear that genetics, as well as environmental influences, play roles in the aetiology of CHD. Here we address both these aspects of causation with respect to the Notch signalling pathway. In our CHD cohort, variants in core Notch pathway genes account for 20% of those that cause disease, a rate that did not increase with the inclusion of genes of the broader Notch pathway and its regulators. This is reinforced by case-control burden analysis where variants in Notch pathway genes are enriched in CHD patients. This enrichment is due to variation in NOTCH1. Functional analysis of some novel missense NOTCH1 and DLL4 variants in cultured cells demonstrate reduced signalling activity, allowing variant reclassification. Although loss-of-function variants in DLL4 are known to cause Adams-Oliver syndrome, this is the first report of a hypomorphic DLL4 allele as a cause of isolated CHD. Finally, we demonstrate a gene-environment interaction in mouse embryos between Notch1 heterozygosity and low oxygen- or anti-arrhythmic drug-induced gestational hypoxia, resulting in an increased incidence of heart defects. This implies that exposure to environmental insults such as hypoxia could explain variable expressivity and penetrance of observed CHD in families carrying Notch pathway variants.

Funder

NSW State Government

NIH

National Health and Medical Research Council

National Heart Foundation of Australia Future Leader Fellowship

Office of Health and Medical Research

Publisher

Oxford University Press (OUP)

Subject

Genetics(clinical),Genetics,Molecular Biology,General Medicine

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