Cerebellar and Pontocerebellar Hypoplasia
Gene: GTF3C1
ESHG 2026
6 individuals from 6 unrelated families (4 consanguineous) with biallelic variants in GTF3C1 which segregated with disease (6 missense, 1 nonsense). Phenotype included developmental delay, intellectual disability, microcephaly, cerebellar atrophy/hypoplasia, abnormal corpus callosum, arthrogryposis, and variable craniofacial features.
GTF3C1 encodes a subunit within the general Transcription Factor IIIC (TFIIIC), which is involved general transcription factor activity via recruitment of RNA polymerase III for target gene transcription. Two other TFIIIC subunits, GTF3C3 and GTF3C5, have been implicated in neurodevelopmental disorders. Molecular modelling suggested missense variants disrupt intramolecular interactions, causing instability of the TFIIIC complex. Proteomic analysis using patient cell lines revealed significantly reduced GTF3C1 protein. A relative complex abundance assay demonstrated the five other subunits of the TFIIIC complex were also reduced, and suggests a loss-of-function mechanism. Gtf3c1 knockdown in mouse brain revealed impaired neuronal production and cell cycle exit.
Sources: OtherCreated: 17 Aug 2026, 10:20 a.m.
Mode of inheritance
BIALLELIC, autosomal or pseudoautosomal
Phenotypes
Neurodevelopmental disorder, MONDO:0700092, GTF3C1-related
Gene: gtf3c1 has been classified as Amber List (Moderate Evidence).
gene: GTF3C1 was added gene: GTF3C1 was added to Cerebellar and Pontocerebellar Hypoplasia. Sources: Expert Review Amber,Other Mode of inheritance for gene: GTF3C1 was set to BIALLELIC, autosomal or pseudoautosomal Phenotypes for gene: GTF3C1 were set to Neurodevelopmental disorder, MONDO:0700092, GTF3C1-related