Abstract
The genetic alterations leading to congenital heart defects (CHD) are still poorly understood. We and others have recently shown that in mice loss of Hey2 results in a high incidence of fatal ventricular and atrial septal defects, combined with tricuspid stenosis or atresia in some cases. The phenotype has been postulated to resemble human tetralogy of Fallot. Our analysis of CD1 outbred mice suggests that phenotypic consequences of Hey2 loss can be quite variable and dependent on modifier genes as we detected only isolated VSDs with lower prevalence and a significantly reduced mortality rate in this strain. Since Hey2 is one of the few Notch target genes, it is also conceivable that HEY2 mutations may account for cases of Alagille syndrome (AGS: variable combinations of heart, skeleton, eye, and facial malformations and cholestasis), in which the typical mutations of the Notch ligand JAG1 cannot be found. To clarify the role of HEY2 in human CHD and AGS, we screened by direct sequencing 23 children with CHD and 38 patients diagnosed with AGS, which lack mutations in the JAG1 gene. We found two types of silent changes in the coding region: a CTT-->CTG transition in exon 3 and a CTG-->CTC polymorphism in exon 5. Furthermore, a heterozygous SNP in the splice donor site of exon 4 was detected that is unlikely to disrupt splicing. Although the high incidence and variability of human congenital heart defects implies a multifactorial genetic basis, our results suggest that mutation of HEY2 is not a major contributing factor.
MeSH Terms
Adolescent
Alagille Syndrome/genetics,pathology
Animals
Basic Helix-Loop-Helix Transcription Factors
Calcium-Binding Proteins
Child
Child, Preschool
DNA/chemistry,genetics
Heart Defects, Congenital/genetics,pathology
Humans
Infant
Intercellular Signaling Peptides and Proteins
Jagged-1 Protein
Membrane Proteins/genetics
Mice
Mice, Inbred C57BL
Mice, Knockout
Microsatellite Repeats/genetics
Point Mutation
Polymerase Chain Reaction
Polymorphism, Single Nucleotide
Repressor Proteins/genetics
Sequence Analysis, DNA
Serrate-Jagged Proteins
Chemicals
Basic Helix-Loop-Helix Transcription Factors
Calcium-Binding Proteins
HEY2 protein, human
Intercellular Signaling Peptides and Proteins
JAG1 protein, human
Jag1 protein, mouse
Jagged-1 Protein
Membrane Proteins
Repressor Proteins
Serrate-Jagged Proteins
DNA
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Fischer Andreas
Theodor-Boveri-Institute (Biocenter), Physiological Chemistry I, University of Wuerzburg, D-97074, Am Hubland, Wuerzburg, Germany.
Klamt Barbara
Schumacher Nina
Glaeser Christiane
Hansmann Ingo
Fenge Hartmut
Gessler Manfred
References (23)
23 references, click to expand
-
The Notch target genes Hey1 and Hey2 are required for embryonic vascular development.
Genes Dev. 2004 Apr 15;18(8):901-11
PMID: 15107403
-
Genetic assembly of the heart: implications for congenital heart disease.
Annu Rev Physiol. 2001;63:451-69
PMID: 11181963
-
Tetralogy of fallot and other congenital heart defects in Hey2 mutant mice.
Curr Biol. 2002 Sep 17;12 (18):1605-10
PMID: 12372254
-
Ventricular septal defect and cardiomyopathy in mice lacking the transcription factor CHF1/Hey2.
Proc Natl Acad Sci U S A. 2002 Dec 10;99(25):16197-202
PMID: 12454287
-
A mouse model of Alagille syndrome: Notch2 as a genetic modifier of Jag1 haploinsufficiency.
Development. 2002 Feb;129(4):1075-82
PMID: 11861489
-
Syndromic paucity of interlobular bile ducts (Alagille syndrome or arteriohepatic dysplasia): review of 80 cases.
J Pediatr. 1987 Feb;110(2):195-200
PMID: 3806290
-
Parental mosaicism of JAG1 mutations in families with Alagille syndrome.
Eur J Hum Genet. 2001 Mar;9(3):209-16
PMID: 11313761
-
Gridlock signalling pathway fashions the first embryonic artery.
Nature. 2001 Nov 8;414(6860):216-20
PMID: 11700560
-
gridlock, an HLH gene required for assembly of the aorta in zebrafish.
Science. 2000 Mar 10;287(5459):1820-4
PMID: 10710309
-
Closure of ventricular septal defects: a study of factors influencing spontaneous and surgical closure.
Cardiol Young. 2002 Jul;12 (4):357-63
PMID: 12206559
-
HERP1 is a cell type-specific primary target of Notch.
J Biol Chem. 2002 Feb 22;277(8):6598-607
PMID: 11741889
-
Tricuspid atresia. A re-evaluation and classification.
J Thorac Cardiovasc Surg. 1974 Apr;67(4):530-42
PMID: 4818528
-
Alagille syndrome is caused by mutations in human Jagged1, which encodes a ligand for Notch1.
Nat Genet. 1997 Jul;16(3):243-51
PMID: 9207788
-
Identification of 36 novel Jagged1 (JAG1) mutations in patients with Alagille syndrome.
Hum Mutat. 2003 Jan;21(1):100
PMID: 12497640
-
A case of Alagille's syndrome with translocation (4;14) (q21;q21).
Ann Genet. 1989;32(2):117-9
PMID: 2757361
-
Comparative analysis of the human and mouse Hey1 promoter: Hey genes are new Notch target genes.
Biochem Biophys Res Commun. 2000 Aug 28;275(2):652-60
PMID: 10964718
-
Jagged1 mutations in alagille syndrome.
Hum Mutat. 2001;17 (1):18-33
PMID: 11139239
-
Characterization of the human and mouse HEY1, HEY2, and HEYL genes: cloning, mapping, and mutation screening of a new bHLH gene family.
Genomics. 2000 Jun 1;66(2):195-203
PMID: 10860664
-
Evolution of ventricular septal defect with special reference to spontaneous closure rate, subaortic ridge and aortic valve prolapse.
Pediatr Cardiol. 2003 Jan-Feb;24(1):31-5
PMID: 12360383
-
Mouse gridlock: no aortic coarctation or deficiency, but fatal cardiac defects in Hey2 -/- mice.
Curr Biol. 2002 Sep 17;12(18):1601-4
PMID: 12372253
-
Hey bHLH factors in cardiovascular development.
Cold Spring Harb Symp Quant Biol. 2002;67:63-70
PMID: 12858525
-
Mutations in the human Jagged1 gene are responsible for Alagille syndrome.
Nat Genet. 1997 Jul;16(3):235-42
PMID: 9207787
-
Analysis of cardiovascular phenotype and genotype-phenotype correlation in individuals with a JAG1 mutation and/or Alagille syndrome.
Circulation. 2002 Nov 12;106(20):2567-74
PMID: 12427653