Bone Marrow Failure

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 19 panels

2 reviews

Santosh Varughese (University of Melbourne)

Green List (high evidence)

Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal

Phenotypes
Fanconi anemia, complementation group Q

Publications

Mode of pathogenicity
Loss-of-function variants (as defined in pop up message) DO NOT cause this phenotype - please provide details in the comments

Variants in this GENE are reported as part of current diagnostic practice

Zornitza Stark (Victorian Clinical Genetics Services)

Green List (high evidence)

Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal

Phenotypes
Fanconi anemia, complementation group Q, MIM# 615272

Publications

History Filter Activity

13 Sep 2020, Gel status: 3

Entity classified by Genomics England curator

Zornitza Stark (Victorian Clinical Genetics Services)

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

13 Sep 2020, Gel status: 3

Set Phenotypes

Zornitza Stark (Victorian Clinical Genetics Services)

Phenotypes for gene: ERCC4 were changed from to Fanconi anemia, complementation group Q, MIM# 615272

13 Sep 2020, Gel status: 3

Set publications

Zornitza Stark (Victorian Clinical Genetics Services)

Publications for gene: ERCC4 were set to

13 Sep 2020, Gel status: 3

Set mode of inheritance

Zornitza Stark (Victorian Clinical Genetics Services)

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)

gene: ERCC4 was added gene: ERCC4 was added to Bone Marrow Failure_VCGS. Sources: Expert Review Green,Victorian Clinical Genetics Services Mode of inheritance for gene: ERCC4 was set to Unknown