18-45916543-G-T
Variant summary
Our verdict is Uncertain significance. The variant received 0 ACMG points: 2P and 2B. PM2BP4_Moderate
The NM_020964.3(EPG5):c.3279C>A(p.Ser1093Arg) variant causes a missense change involving the alteration of a non-conserved nucleotide. The variant allele was found at a frequency of 0.00000559 in 1,610,794 control chromosomes in the GnomAD database, with no homozygous occurrence. In-silico tool predicts a benign outcome for this variant. 13/22 in silico tools predict a benign outcome for this variant. Variant has been reported in ClinVar as Uncertain significance (★). Synonymous variant affecting the same amino acid position (i.e. S1093S) has been classified as Likely benign.
Frequency
Consequence
NM_020964.3 missense
Scores
Clinical Significance
Conservation
Publications
- Vici syndromeInheritance: AR Classification: DEFINITIVE, STRONG, SUPPORTIVE Submitted by: Labcorp Genetics (formerly Invitae), Ambry Genetics, Orphanet, G2P
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ACMG classification
Our verdict: Uncertain_significance. The variant received 0 ACMG points.
Transcripts
RefSeq
Ensembl
Frequencies
GnomAD3 genomes AF: 0.0000394 AC: 6AN: 152124Hom.: 0 Cov.: 32 show subpopulations
GnomAD2 exomes AF: 0.00000401 AC: 1AN: 249160 AF XY: 0.00000740 show subpopulations
GnomAD4 exome AF: 0.00000206 AC: 3AN: 1458552Hom.: 0 Cov.: 31 AF XY: 0.00 AC XY: 0AN XY: 724778 show subpopulations
GnomAD4 genome AF: 0.0000394 AC: 6AN: 152242Hom.: 0 Cov.: 32 AF XY: 0.0000537 AC XY: 4AN XY: 74446 show subpopulations
Age Distribution
ClinVar
Submissions by phenotype
Vici syndrome Uncertain:1
In summary, the available evidence is currently insufficient to determine the role of this variant in disease. Therefore, it has been classified as a Variant of Uncertain Significance. This sequence change replaces serine, which is neutral and polar, with arginine, which is basic and polar, at codon 1093 of the EPG5 protein (p.Ser1093Arg). This variant is present in population databases (rs72918350, gnomAD 0.007%). This variant has not been reported in the literature in individuals affected with EPG5-related conditions. Advanced modeling of protein sequence and biophysical properties (such as structural, functional, and spatial information, amino acid conservation, physicochemical variation, residue mobility, and thermodynamic stability) performed at Invitae indicates that this missense variant is not expected to disrupt EPG5 protein function. -
Computational scores
Source:
Splicing
Find out detailed SpliceAI scores and Pangolin per-transcript scores at