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Symbol report for EPS8L2

Stable symbol

HGNC data for EPS8L2

Approved symbol
EPS8L2
Approved name

EPS8 signaling adaptor L2

Locus type
gene with protein product
HGNC ID
HGNC:21296
Symbol status
Approved
Previous names
EPS8-like 2
EPS8 like 2
Alias symbols
FLJ21935
FLJ22171
MGC3088
Alias names
Epidermal growth factor receptor kinase substrate 8-like protein 2
Chromosomal location
11p15.5
Bos taurus
EPS8L2 VGNC:58372 VGNC
Canis familiaris
EPS8L2 VGNC:40429 VGNC
Equus caballus
EPS8L2 VGNC:17639 VGNC
Felis catus
EPS8L2 VGNC:61922 VGNC
Macaca mulatta
EPS8L2 VGNC:72081 VGNC
Mus musculus
Eps8l2 MGI:2138828 Curated
Rattus norvegicus
Eps8l2 RGD:1310912
Sus scrofa
EPS8L2 VGNC:87751 VGNC
EPS8L2 is a new causal gene for childhood onset autosomal recessive progressive hearing loss.
Dahmani M et al. Orphanet J Rare Dis 2015 Aug;1096
Dahmani M, Ammar-Khodja F, Bonnet C, Lefèvre GM, Hardelin JP, Ibrahim H, Mallek Z, Petit C.
Orphanet J Rare Dis 2015 Aug;1096
Abstract: <h4>Background</h4>More than 70 % of the cases of congenital deafness are of genetic origin, of which approximately 80 % are non-syndromic and show autosomal recessive transmission (DFNB forms). To date, 60 DFNB genes have been identified, most of which cause congenital, severe to profound deafness, whereas a few cause delayed progressive deafness in childhood. We report the study of two Algerian siblings born to consanguineous parents, and affected by progressive hearing loss.<h4>Method</h4>After exclusion of GJB2 (the gene most frequently involved in non-syndromic deafness in Mediterranean countries), we performed whole-exome sequencing in one sibling.<h4>Results</h4>A frame-shift variant (c.1014delC; p.Ser339Alafs*15) was identified in EPS8L2, encoding Epidermal growth factor receptor Pathway Substrate 8 L2, a protein of hair cells' stereocilia previously implicated in progressive deafness in the mouse. This variant predicts a truncated, inactive protein, or no protein at all owing to nonsense-mediated mRNA decay. It was detected at the homozygous state in the two clinically affected siblings, and at the heterozygous state in the unaffected parents and one unaffected sibling, whereas it was never found in a control population of 150 Algerians with normal hearing or in the Exome Variant Server database.<h4>Conclusion</h4>Whole-exome sequencing allowed us to identify a new gene responsible for childhood progressive hearing loss transmitted on the autosomal recessive mode.
In silico analysis of the EPS8 gene family: genomic organization, expression profile, and protein structure.
Tocchetti A et al. Genomics 2003 Feb;81(2)234-244
Tocchetti A, Confalonieri S, Scita G, Di Fiore PP, Betsholtz C.
Genomics 2003 Feb;81(2)234-244
Abstract: EPS8 codes for a protein essential in Ras to Rac signaling leading to actin remodeling. Three genes highly homologous to EPS8 were discovered, thereby defining a novel gene family. Here, we report the genomic structure of EPS8 and the EPS8-related genes in human and mouse. We performed BLASTN searches against the Celera Human Genome and Mouse Fragments Database. The mouse fragments were manually assembled, and the organization of both human and mouse genes was reconstructed. The gene structures in Celera annotations of the human and mouse genomes were compared to outline correspondences and divergences. We also compared the EPS8 family gene structures predicted by Celera with those predicted by NCBI. Moreover, we performed a virtual analysis of the expression of the EPS8 gene family members by using the SAGEmap Database in NCBI. Finally, we analyzed the domain organization of the gene products and their evolutionary conservation to define novel putative domains, thereby helping to predict novel modality of action for the members of this gene family. The data obtained will be instrumental in directing further experimental functional characterization of these genes.