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Hereditary Haemorrhagic Telangiectasia

Gene: DROSHA

Amber List (moderate evidence)

DROSHA (drosha ribonuclease III)
EnsemblGeneIds (GRCh38): ENSG00000113360
EnsemblGeneIds (GRCh37): ENSG00000113360
OMIM: 608828, ClinGen, DECIPHER
DROSHA is in 6 panels

2 reviews

Bryony Thompson (Royal Melbourne Hospital)

I don't know

PMIDs 29339534, 35405010, and 39654947 report 8 unrelated families with heterozygous missense DROSHA variants causing hereditary hemorrhagic telangiectasia (n=5), a severe neurodevelopmental disorder (n=2), or adult‑onset spontaneous coronary artery dissection (n=1). Functional assays in MEFs, zebrafish, mouse, Drosophila, C. elegans, and patient fibroblasts demonstrate loss‑of‑function effects. Segregation evidence includes de novo confirmation in two families and multigeneration transmission in one HHT family.
PMID 29339534 - p.P100L segregating in a family with HHT is too common in gnomAD to be associated with a dominant disease. The family segregating p.R279L was also segregating an ENG splice site variant. p.P32L is too common in gnomAD for AD disease. Null mouse model has a phenotype consistent with HHT. 2 other rare missense in 2 unrelated HHT probands (no segregation evidence).
Created: 6 Apr 2026, 11:37 a.m. | Last Modified: 6 Apr 2026, 11:37 a.m.
Panel Version: 1.4720

Mode of inheritance
MONOALLELIC, autosomal or pseudoautosomal, imprinted status unknown

Phenotypes
Neurodevelopmental disorder, MONDO:0700092; hereditary hemorrhagic telangiectasia MONDO:0019180; idiopathic spontaneous coronary artery dissection MONDO:0007385

Publications

Lucy Spencer (Victorian Clinical Genetics Services)

I don't know

2 individuals with profound intellectual disability, epilepsy, white matter atrophy, microcephaly, and dysmorphic features, who carry damaging de novo heterozygous variants in DROSHA. Both variants are missense, absent from gnomad. Both individuals noted to have Rett-like features.

Functional studies in patient fibroblasts showed one of the missense altered the expression of mature miRNA. Fruit fly models with homozygous LOF variants die during larval stages. introduction of the missense seen in the patients was able to partially rescue this phenotype suggesting LOF is not the mechanism.
Sources: Literature
Created: 5 May 2022, 11:20 a.m.

Mode of inheritance
MONOALLELIC, autosomal or pseudoautosomal, imprinted status unknown

Phenotypes
Neurodevelopmental disorder (MONDO#0700092), DROSHA-related

Publications

Details

Mode of Inheritance
MONOALLELIC, autosomal or pseudoautosomal, imprinted status unknown
Sources
  • Literature
  • Expert Review Amber
  • Literature
Phenotypes
  • Neurodevelopmental disorder, MONDO:0700092
  • hereditary hemorrhagic telangiectasia MONDO:0019180
  • idiopathic spontaneous coronary artery dissection MONDO:0007385
Tags
non-coding gene
OMIM
608828
ClinGen
DROSHA
DECIPHER
DROSHA
Clinvar variants
Variants in DROSHA
Penetrance
None
Publications
Panels with this gene

History Filter Activity

6 Apr 2026, Gel status: 2

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

Bryony Thompson (Royal Melbourne Hospital)

gene: DROSHA was added gene: DROSHA was added to Hereditary Haemorrhagic Telangiectasia. Sources: Expert Review Amber,Literature non-coding gene tags were added to gene: DROSHA. Mode of inheritance for gene: DROSHA was set to MONOALLELIC, autosomal or pseudoautosomal, imprinted status unknown Publications for gene: DROSHA were set to 39654947; 35405010; 29339534 Phenotypes for gene: DROSHA were set to Neurodevelopmental disorder, MONDO:0700092; hereditary hemorrhagic telangiectasia MONDO:0019180; idiopathic spontaneous coronary artery dissection MONDO:0007385