NM_000088.4:c.3559G>T
Variant summary
Our verdict is Pathogenic. The variant received 13 ACMG points: 13P and 0B. PM1PM2PM5PP2PP3_StrongPP5_Moderate
The NM_000088.4(COL1A1):c.3559G>T(p.Gly1187Cys) variant causes a missense change. The variant was absent in control chromosomes in GnomAD project. In-silico tool predicts a pathogenic outcome for this variant. Variant has been reported in ClinVar as Likely pathogenic (★). Another variant affecting the same amino acid position, but resulting in a different missense (i.e. G1187S) has been classified as Pathogenic.
Frequency
Consequence
NM_000088.4 missense
Scores
Clinical Significance
Conservation
Publications
- Caffey diseaseInheritance: AD Classification: DEFINITIVE, STRONG, MODERATE, SUPPORTIVE Submitted by: Ambry Genetics, Orphanet, Labcorp Genetics (formerly Invitae), G2P, ClinGen
- combined osteogenesis imperfecta and Ehlers-Danlos syndrome 1Inheritance: AD Classification: DEFINITIVE, MODERATE Submitted by: Ambry Genetics, ClinGen
- Ehlers-Danlos syndromeInheritance: AD Classification: DEFINITIVE Submitted by: G2P
- Ehlers-Danlos syndrome, arthrochalasia typeInheritance: AD Classification: DEFINITIVE, STRONG, SUPPORTIVE Submitted by: Orphanet, PanelApp Australia, G2P, Genomics England PanelApp, Labcorp Genetics (formerly Invitae), ClinGen
- osteogenesis imperfecta type 1Inheritance: AD Classification: DEFINITIVE, SUPPORTIVE Submitted by: Orphanet, ClinGen
- osteogenesis imperfecta type 2Inheritance: AD Classification: DEFINITIVE, SUPPORTIVE Submitted by: Orphanet, ClinGen
- osteogenesis imperfecta type 3Inheritance: AD Classification: DEFINITIVE, STRONG, SUPPORTIVE Submitted by: ClinGen, Labcorp Genetics (formerly Invitae), Orphanet
- osteogenesis imperfecta type 4Inheritance: AD Classification: DEFINITIVE, SUPPORTIVE Submitted by: G2P, Orphanet, ClinGen
- Ehlers-Danlos syndrome, classic type, 1Inheritance: AD Classification: MODERATE Submitted by: ClinGen
- Ehlers-Danlos syndrome, classic typeInheritance: AD Classification: SUPPORTIVE Submitted by: Orphanet
- Ehlers-Danlos/osteogenesis imperfecta syndromeInheritance: AD Classification: SUPPORTIVE Submitted by: Orphanet
- high bone mass osteogenesis imperfectaInheritance: AD Classification: SUPPORTIVE Submitted by: Orphanet
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ACMG classification
Our verdict: Pathogenic. The variant received 13 ACMG points.
Variant Effect in Transcripts
ACMG analysis was done for transcript: NM_000088.4. You can select a different transcript below to see updated ACMG assignments.
RefSeq Transcripts
| Selected | Gene | Transcript | Tags | HGVSc | HGVSp | Effect | Exon Rank | Protein | UniProt |
|---|---|---|---|---|---|---|---|---|---|
| COL1A1 | NM_000088.4 | MANE Select | c.3559G>T | p.Gly1187Cys | missense | Exon 48 of 51 | NP_000079.2 |
Ensembl Transcripts
| Selected | Gene | Transcript | Tags | HGVSc | HGVSp | Effect | Exon Rank | Protein | UniProt |
|---|---|---|---|---|---|---|---|---|---|
| COL1A1 | ENST00000225964.10 | TSL:1 MANE Select | c.3559G>T | p.Gly1187Cys | missense | Exon 48 of 51 | ENSP00000225964.6 | ||
| COL1A1 | ENST00000510710.3 | TSL:2 | n.228G>T | non_coding_transcript_exon | Exon 1 of 2 |
Frequencies
GnomAD3 genomes Cov.: 32
GnomAD4 exome Cov.: 35
GnomAD4 genome Cov.: 32
ClinVar
Submissions by phenotype
Cardiovascular phenotype Pathogenic:1
The p.G1187C variant (also known as c.3559G>T), located in coding exon 48 of the COL1A1 gene, results from a G to T substitution at nucleotide position 3559. The glycine at codon 1187 is replaced by cysteine, an amino acid with highly dissimilar properties. The majority of pathogenic mutations identified to date in COL1A1 have involved the substitution of another amino acid for glycine within the triple-helical domain (Dagleish R. Nucleic Acids Res. 1997 Jan 1;25(1):181-7; Marini JC et al. Hum Mutat. 2007 Mar;28(3):209-21; Bardai G et al. Osteoporos Int 2016 Dec;27(12):3607-3613). This particular glycine substitution has been previously reported an individual with a clinical diagnosis of osteogenesis imperfecta (Zhang H et al. Mol Med Rep, 2016 Nov;14:4918-4926; Li L et al. Hum. Mutat., 2019 May;40:588-600). Internal structural analysis indicates that this alteration disrupts the characteristic G-X-Y motif in the COL1A1 protein and inserts a bulky side chain into a sterically-constrained region (Bella J et al. Science. 1994;266:75-81; Hohenester E et al. Proc. Natl. Acad. Sci. U.S.A. 2008;105:18273-7; Ambry internal data). This amino acid position is highly conserved in available vertebrate species. In addition, this alteration is predicted to be deleterious by in silico analysis. Based on the majority of available evidence to date, this variant is likely to be pathogenic.
Computational scores
Source:
Splicing
Find out detailed SpliceAI scores and Pangolin per-transcript scores at