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Fetal anomalies

Gene: G6PC3

Green List (high evidence)

G6PC3 (glucose-6-phosphatase catalytic subunit 3)
EnsemblGeneIds (GRCh38): ENSG00000141349
EnsemblGeneIds (GRCh37): ENSG00000141349
OMIM: 611045, Gene2Phenotype
G6PC3 is in 15 panels

2 reviews

Belinda Chong (Victorian Clinical Genetics Services)

I don't know

Multiple unrelated families with G6PC3-deficiency.
Dursun syndrome (MIM#612541); Neutropenia, severe congenital 4, autosomal recessive (MIM#)612541

Deficiencies in G6PC3 impair the hydrolysis of glucose-6-phosphate to glucose. Patients’ neutrophils have both truncated and galactose-defective N- and O-glycans. 86 G6PC3 mutations cause severe congenital neutropenia (SCN) 4 (MIM: 612541) and Dursun syndrome (MIM: 612541). 83 The 119 G6PC3-CDG patients identified present with a wide range of immunological clinical manifestations and cellular/biochemical alterations. CDG and immune response: From bedside to bench and back
doi: 10.1002/jimd.12126

4 unrelated families (PMID:21385794). In summary, our findings provide a novel mechanism for the neutrophil dysfunction seen in both G6PC3 mutation and GSD-1b in that both exhibit profound hypo-galactosylation of N- and O-glycans. The observed defects in glycosylation merit the designation of congenital disorders of glycosylation (CDGs) to both syndromes.

A clinical and molecular review of ubiquitous glucose-6-phosphatase deficiency caused by G6PC3mutations
https://ojrd.biomedcentral.com/articles/10.1186/1750-1172-8-84


Clinical spectrum and long-term follow-up of 14 cases with G6PC3 mutations from the French severe congenital neutropenia registry
https://ojrd.biomedcentral.com/articles/10.1186/s13023-014-0183-8
Created: 22 Jul 2020, 5:39 a.m. | Last Modified: 22 Jul 2020, 5:39 a.m.
Panel Version: 0.96

Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal

Phenotypes
Dursun syndrome 612541; Neutropenia, severe congenital 4, autosomal recessive 612541

Publications

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Green List (high evidence)

Congenital heart defects are a feature.
Created: 5 Jan 2022, 1:32 a.m. | Last Modified: 5 Jan 2022, 1:32 a.m.
Panel Version: 0.1823

Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal

Phenotypes
Neutropenia, severe congenital 4, autosomal recessive, MIM# 612541

Publications

Details

Mode of Inheritance
BIALLELIC, autosomal or pseudoautosomal
Sources
  • Expert Review Green
  • Genomics England PanelApp
  • Genetic Health Queensland
Phenotypes
  • Dursun syndrome 612541
  • Neutropenia, severe congenital 4, autosomal recessive 612541
OMIM
611045
Clinvar variants
Variants in G6PC3
Penetrance
None
Publications
Panels with this gene

History Filter Activity

5 Jan 2022, Gel status: 3

Entity classified by Genomics England curator

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Gene: g6pc3 has been classified as Green List (High Evidence).

5 Jan 2022, Gel status: 3

Set Phenotypes

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Phenotypes for gene: G6PC3 were changed from Dursun syndrome; Neutropenia, severe congenital 4, autosomal recessive to Dursun syndrome 612541; Neutropenia, severe congenital 4, autosomal recessive 612541

5 Jan 2022, Gel status: 3

Set publications

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

Publications for gene: G6PC3 were set to

24 Oct 2021, Gel status: 3

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

Zornitza Stark (Victorian Clinical Genetics Services; Australian Genomics)

gene: G6PC3 was added gene: G6PC3 was added to Fetal anomalies. Sources: Expert Review Green,Genomics England PanelApp Mode of inheritance for gene: G6PC3 was set to BIALLELIC, autosomal or pseudoautosomal Phenotypes for gene: G6PC3 were set to Dursun syndrome; Neutropenia, severe congenital 4, autosomal recessive