Back to Search Start Over

Exploring Shared Susceptibility between Two Neural Crest Cells Originating Conditions: Neuroblastoma and Congenital Heart Disease

Authors :
Maria Giovanna Russo
Bernard Keavney
Alessandro Testori
Achille Iolascon
Marianna Avitabile
Giuseppe Limongelli
Heather J. Cordell
Mario Capasso
Vito Alessandro Lasorsa
Antonella Cardinale
John M. Maris
Flora Cimmino
Sharon J. Diskin
Sueva Cantalupo
Marcella Devoto
Testori, A.
Lasorsa, V. A.
Cimmino, F.
Cantalupo, S.
Cardinale, A.
Avitabile, M.
Limongelli, G.
Russo, M. G.
Diskin, S.
Maris, J.
Devoto, M.
Keavney, B.
Cordell, H. J.
Iolascon, A.
Capasso, M.
Russo, MARIA GRAZIA
DEL VOLGO-GORI, MARIE JOSE
Source :
Genes, Genes, Vol 10, Iss 9, p 663 (2019), Volume 10, Issue 9, Testori, A, Lasorsa, V A, Cimmino, F, Cantalupo, S, Cardinale, A, Avitabile, M, Limongelli, G, Russo, M G, Diskin, S, Maris, J, Devoto, M, Keavney, B, Cordell, H J, Iolascon, A & Capasso, M 2019, ' Exploring Shared Susceptibility between Two Neural Crest Cells Originating Conditions : Neuroblastoma and Congenital Heart Disease ', Genes, vol. 10, no. 9 . https://doi.org/10.3390/genes10090663
Publication Year :
2019
Publisher :
MDPI, 2019.

Abstract

In the past years, genome wide association studies (GWAS) have provided evidence that inter-individual susceptibility to diverse pathological conditions can reveal a common genetic architecture. Through the analysis of congenital heart disease (CHD) and neuroblastoma (NB) GWAS data, we aimed to dissect the genetic susceptibility shared between these conditions, which are known to arise from neural crest cell (NCC) migration or development abnormalities, via identification and functional characterization of common regions of association. Two loci (2q35 and 3q25.32) harbor single nucleotide polymorphisms (SNPs) that are associated at a p-value &lt<br />10&minus<br />3 with conotruncal malformations and ventricular septal defect respectively, as well as with NB. In addition, the lead SNP in 4p16.2 for atrial septal defect and the lead SNP in 3q25.32 for tetralogy of Fallot are less than 250 Kb distant from the lead SNPs for NB at the same genomic regions. Some of these shared susceptibility loci regulate the expression of relevant genes involved in NCC formation and developmental processes (such as BARD1, MSX1, and SHOX2) and are enriched in several epigenetic markers from NB and fetal heart cell lines. Although the clinical correlation between NB and CHD is unclear, our exploration of a possible common genetic basis between NB and a subset of cardiac malformations can help shed light on their shared embryological origin and pathogenetic mechanisms.

Details

Language :
English
ISSN :
20734425
Volume :
10
Issue :
9
Database :
OpenAIRE
Journal :
Genes
Accession number :
edsair.doi.dedup.....095075a7087c0e3421792980d72625d2
Full Text :
https://doi.org/10.3390/genes10090663