rs1057520058
Variant summary
Our verdict is Pathogenic. Variant got 18 ACMG points: 18P and 0B. PVS1PM2PP5_Very_Strong
The NM_032043.3(BRIP1):c.409_410delAA(p.Lys137ValfsTer4) variant causes a frameshift change. The variant was absent in control chromosomes in GnomAD project. Variant has been reported in ClinVar as Likely pathogenic (★★). Variant results in nonsense mediated mRNA decay.
Frequency
Consequence
NM_032043.3 frameshift
Scores
Clinical Significance
Conservation
Genome browser will be placed here
ACMG classification
Verdict is Pathogenic. Variant got 18 ACMG points.
Transcripts
RefSeq
Ensembl
Frequencies
GnomAD3 genomes Cov.: 32
GnomAD4 genome Cov.: 32
ClinVar
Submissions by phenotype
Familial cancer of breast;C1836860:Fanconi anemia complementation group J Pathogenic:1
This sequence change creates a premature translational stop signal (p.Lys137Valfs*4) in the BRIP1 gene. It is expected to result in an absent or disrupted protein product. Loss-of-function variants in BRIP1 are known to be pathogenic (PMID: 16116423, 17033622, 21964575). This variant is not present in population databases (gnomAD no frequency). This variant has not been reported in the literature in individuals affected with BRIP1-related conditions. ClinVar contains an entry for this variant (Variation ID: 376794). For these reasons, this variant has been classified as Pathogenic. -
not provided Pathogenic:1
- -
Familial cancer of breast Pathogenic:1
This variant is considered pathogenic. This variant creates a frameshift predicted to result in premature protein truncation. -
Hereditary cancer-predisposing syndrome Pathogenic:1
The c.409_410delAA pathogenic mutation, located in coding exon 4 of the BRIP1 gene, results from a deletion of two nucleotides at nucleotide positions 409 to 410, causing a translational frameshift with a predicted alternate stop codon (p.K137Vfs*4). This variant is considered to be rare based on population cohorts in the Genome Aggregation Database (gnomAD). This alteration is expected to result in loss of function by premature protein truncation or nonsense-mediated mRNA decay. As such, this alteration is interpreted as a disease-causing mutation. -
Computational scores
Source:
Splicing
Find out detailed SpliceAI scores and Pangolin per-transcript scores at