Radial Ray Abnormalities

Gene: ERCC4

Green List (high evidence)

ERCC4 (ERCC excision repair 4, endonuclease catalytic subunit)
EnsemblGeneIds (GRCh38): ENSG00000175595
EnsemblGeneIds (GRCh37): ENSG00000175595
OMIM: 133520, Gene2Phenotype
ERCC4 is in 21 panels

1 review

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Green List (high evidence)

Bi-allelic variants in this gene are associated with a range of phenotypes, including FA and radial ray defects.
Created: 24 Apr 2021, 1:26 a.m. | Last Modified: 24 Apr 2021, 1:26 a.m.
Panel Version: 0.92

Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal

Phenotypes
Fanconi aanemia, complementation group Q, MIM# 615272; MONDO:0014108

Publications

History Filter Activity

24 Apr 2021, Gel status: 3

Entity classified by Genomics England curator

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Gene: ercc4 has been classified as Green List (High Evidence).

24 Apr 2021, Gel status: 3

Set Phenotypes

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Phenotypes for gene: ERCC4 were changed from to Fanconi aanemia, complementation group Q, MIM# 615272; MONDO:0014108

24 Apr 2021, Gel status: 3

Set publications

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Publications for gene: ERCC4 were set to

24 Apr 2021, Gel status: 3

Set mode of inheritance

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Mode of inheritance for gene: ERCC4 was changed from Unknown to BIALLELIC, autosomal or pseudoautosomal

17 Nov 2019, Gel status: 3

Created, Added New Source, Set mode of inheritance

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

gene: ERCC4 was added gene: ERCC4 was added to Radial Ray Abnormalities_VCGS. Sources: Expert Review Green,Victorian Clinical Genetics Services Mode of inheritance for gene: ERCC4 was set to Unknown