Rhabdomyolysis and Metabolic Myopathy

Gene: ANO5

Green List (high evidence)

ANO5 (anoctamin 5)
EnsemblGeneIds (GRCh38): ENSG00000171714
EnsemblGeneIds (GRCh37): ENSG00000171714
OMIM: 608662, Gene2Phenotype
ANO5 is in 9 panels

2 reviews

Bryony Thompson (Royal Melbourne Hospital)

Green List (high evidence)

Comment on list classification: The phenotype can range from asymptomatic hyperCKemia and exercise-induced myalgia to proximal and/or distal muscle weakness
Created: 14 Apr 2023, 9:14 a.m. | Last Modified: 14 Apr 2023, 9:14 a.m.
Panel Version: 0.120
Loss of function is the mechanism of disease for muscular dystrophy and gain of function is the mechanism of disease for skeletal dysplasia.
Created: 28 May 2020, 4:19 a.m. | Last Modified: 28 May 2020, 4:19 a.m.
Panel Version: 0.2918

Mode of inheritance
BOTH monoallelic and biallelic, autosomal or pseudoautosomal

Phenotypes
Gnathodiaphyseal dysplasia MIM#166260; Miyoshi muscular dystrophy 3 MIM#613319; Muscular dystrophy, limb-girdle, autosomal recessive 12 MIM#611307

Publications

Teresa Zhao (Victorian Clinical Genetics Services)

Green List (high evidence)

Conditions can be progressive with variable expressivity

Disease mechanism (PTC variants): LoF
Disease mechanism (missense variants): Unclear. Miss variants identified in GDD patients were expressed less than WT in transfected HEK293 cells (PMID: 28176803), however PMID: 32112655 suggested GoF for GDD-related missense while LoF for muscle phenotype-related missense. Dom-neg hypothesised by PMID: 23047743.

hotspot in exon 5 and 20 (PMID: 25891276 - An LGMD and myopathy study). Missense at p.Cys356 is a hotspot for GDD (PMID: 30554457).
Created: 15 May 2020, 1:36 a.m. | Last Modified: 15 May 2020, 1:36 a.m.
Panel Version: 0.28

Mode of inheritance
BOTH monoallelic and biallelic, autosomal or pseudoautosomal

Phenotypes
Gnathodiaphyseal dysplasia, MIM 166260; Miyoshi muscular dystrophy 3, MIM 613319; Muscular dystrophy, limb-girdle, AR 12, MIM 611307

Publications

Details

Mode of Inheritance
BIALLELIC, autosomal or pseudoautosomal
Sources
  • Expert Review Green
  • Royal Melbourne Hospital
Phenotypes
  • Miyoshi muscular dystrophy 3 613319
  • Muscular dystrophy, limb-girdle, type 2L 611307
OMIM
608662
Clinvar variants
Variants in ANO5
Penetrance
None
Publications
Panels with this gene

History Filter Activity

14 Apr 2023, Gel status: 3

Entity classified by Genomics England curator

Bryony Thompson (Royal Melbourne Hospital)

Gene: ano5 has been classified as Green List (High Evidence).

14 Apr 2023, Gel status: 3

Set publications

Bryony Thompson (Royal Melbourne Hospital)

Publications for gene: ANO5 were set to

14 Apr 2023, Gel status: 3

Entity classified by Genomics England curator

Bryony Thompson (Royal Melbourne Hospital)

Gene: ano5 has been classified as Green List (High Evidence).

14 Jan 2020, Gel status: 3

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

Bryony Thompson (Royal Melbourne Hospital)

gene: ANO5 was added gene: ANO5 was added to Rhabdomyolysis_RMH. Sources: Royal Melbourne Hospital,Expert Review Green Mode of inheritance for gene: ANO5 was set to BIALLELIC, autosomal or pseudoautosomal Phenotypes for gene: ANO5 were set to Miyoshi muscular dystrophy 3 613319; Muscular dystrophy, limb-girdle, type 2L 611307