Genes in panel

Ataxia

Gene: XPA

Green List (high evidence)

XPA (XPA, DNA damage recognition and repair factor, Ensemblv115)
EnsemblGeneIds (GRCh38): ENSG00000136936
EnsemblGeneIds (GRCh37): ENSG00000136936
OMIM: 611153, ClinGen, DECIPHER
XPA is in 14 panels

1 review

Bryony Thompson (Royal Melbourne Hospital)

Green List (high evidence)

Biallelic XPA variants cause xeroderma pigmentosum group A. Ataxia can be a feature of the condition.
Sources: Literature
Created: 20 Sep 2026, 5:13 p.m.

Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal

Phenotypes
xeroderma pigmentosum group A, MONDO:0010210

Publications

History Filter Activity

Note: This information shows the history of the gene symbol, not the gene entity. Where the gene symbol for a gene has changed, this history may reference a different gene to the entry you are currently viewing.
20 Sep 2026, Gel status: 3

Entity classified by Genomics England curator

Bryony Thompson (Royal Melbourne Hospital)

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

20 Sep 2026, Gel status: 3

Entity classified by Genomics England curator

Bryony Thompson (Royal Melbourne Hospital)

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

20 Sep 2026, Gel status: 1

Created, Added New Source, Set mode of inheritance, Set publications, Set Phenotypes

Bryony Thompson (Royal Melbourne Hospital)

gene: XPA was added gene: XPA was added to Ataxia. Sources: Literature Mode of inheritance for gene: XPA was set to BIALLELIC, autosomal or pseudoautosomal Publications for gene: XPA were set to 38040034; 36893274; 35699229; 31478152; 30077970 Phenotypes for gene: XPA were set to xeroderma pigmentosum group A, MONDO:0010210 Review for gene: XPA was set to GREEN