ATM encodes a kinase that acts as a master controller of the cellular DNA damage response: it detects double-strand breaks and coordinates DNA repair, cell cycle arrest, or apoptosis through downstream targets including p53, BRCA1, and CHK2. Loss-of-function mutations in both copies of ATM cause ataxia telangiectasia, an autosomal recessive disorder characterized by neurological problems, immune deficiency, and cancer predisposition. ATM functions as a tumor suppressor: individuals with ataxia telangiectasia are prone to childhood lymphomas, leukemias, and breast cancer, while carriers of a single altered copy have increased risk of breast, pancreatic, prostate, and other cancers. Somatic ATM mutations also occur in lymphoid malignancies and solid tumors, and ATM-deficient cancers are often especially sensitive to DNA-damaging treatments.
This variant
This pathogenic classification identifies c.1039G>T as a loss-of-function ATM allele: the premature stop is predicted to trigger nonsense-mediated decay, eliminating the kinase that coordinates DNA double-strand-break repair. Carriers of such an allele carry the elevated breast, pancreatic, and prostate cancer risks described for ATM, while two altered copies would cause ataxia telangiectasia.
Transcript
NM_000051.4
HGVS · transcript:coding
NM_000051.4:c.1039G>T
GRCh38
chr11:108247101 G>T
GRCh37
chr11:108117828 G>T
Pathogenic: ATM VCEP Rule 4 is satisfied by PVS1 at very strong strength plus two supporting criteria, PM2 and PM5.
Classification rationale
PVS1PM2PM5Pathogenic
ATM c.1039G>Tnonsense · exon 8
PVS1 (Very Strong): nonsense variant p.(Glu347Ter) predicted to trigger nonsense-mediated decay. PM2 (Supporting): gnomAD v4 allele frequency 0.000186% is below the 0.001% rarity threshold. PM5 (Supporting): premature termination codon p.(Glu347Ter) lies upstream of p.Arg3047 per the ATM VCEP truncating-variant rule. Overall classification: Pathogenic by ATM VCEP Rule 4 (PVS1 very strong plus PM2 and PM5 supporting).
PVS1 + PM2 + PM5→Pathogenic
LYFE Sciences is an AI system, and it can make mistakes. Criteria
may be applied incorrectly, sources may be misread, and a confident-looking
classification can still be wrong. Double-check every criterion and
its underlying evidence before relying on any call.
Gene diagram
· NM_000051.4 · variants mapped to exon structure
ATMNM_000051.4
Fetching transcript structure from UCSC…
Exons
—
Transcript span
—
Strand
—
Variants mapped
—
Source
UCSC ncbiRefSeqCurated
All variants in ATM—click a row to locate it on the plot · use the link column to open its page
Protein
Location
Classification
Link
Applied criteria · 3 applied · 9 assessed
MetEvidence satisfies this criterion.
Not metEvaluated against available evidence; threshold not reached.
Not assessedApplies in principle, but no evidence was found to evaluate it.
N/ADoesn't apply to this variant type.
Applied · 3
Strength Supporting Moderate Strong Very strong
✓
PVS1very strongPathogenic
Met: c.1039G>T creates a premature stop at residue 347 of the 3057-residue ATM protein, upstream of the final coding exon and predicted to trigger nonsense-mediated decay.
Variant normalization identifies NM_000051.4:c.1039G>T as NP_000042.3:p.(Glu347Ter), a nonsense change in exon 8; the reference protein is 3057 residues and the predicted protein terminates at residue 347.The ATM HBOP VCEP PVS1 guide defines PVS1 for nonsense, frameshift, canonical splice, initiation-codon, and exon-deletion null variants in ATM, states that the default NM_000051.3 transcript exons are constitutive, and limits its stated cautions to extreme 3′ LOF variants and splice variants predicted to skip an exon in-frame while leaving the remainder intact.The gene-level PVS1 eligibility assessment identifies ATM loss of function as an established germline disease mechanism under the applicable VCEP framework.
Met: gnomAD v4 aggregate allele frequency 0.000186% is below the PM2 Supporting cutoff of 0.001%. Flagged for human review: the Admixed American subpopulation frequency (0.005%) exceeds the cutoff.
ATM VCEP v1.5 specifies PM2 Supporting at frequency <=0.001% in the gnomAD v4 dataset and notes that n=1 in a single subpopulation is sufficient for PM2 Supporting.gnomAD v4 reports total AF = 1.858980237800752e-06 (0.000185898%), based on 3/1,613,788 alleles, with 0 homozygotes.The highest observed subpopulation is Admixed American: 3/60,014 alleles, AF = 4.998833605492052e-05 (0.0049988%), with 0 homozygotes; grpmax FAF = 1.327e-05.
Met: the premature stop p.(Glu347Ter) lies upstream of p.Arg3047, meeting the ATM VCEP PM5 supporting rule for truncating variants.
The case normalization identifies NM_000051.4:c.1039G>T as the truncating variant NP_000042.3:p.(Glu347Ter), at residue 347.The ATM VCEP v1.5 PM5 rule states: apply to frameshifting or truncating variants with premature termination codons upstream of p.Arg3047.
This variant is present in gnomAD v4.1 (AF= 1.85898e-06; MAF= 0.00019%, 3/1613788 alleles, homozygotes = 0) and has highest observed frequency in the Admixed American population (AF= 4.99883e-05; MAF= 0.00500%, 3/60014 alleles, homozygotes = 0); grpmax FAF= 1.327e-05.
v2.1
Absent from gnomAD v2.1.
🇨🇦 CA
Absent from gnomAD-Canada v1.0.
Allele frequency by ancestry
three datasets · side by side
gnomAD v4.1
0.00019%
· 3 / 1,613,788
0 hom · FAF 0.0013%
Admixed American
3 / 60,014
0.005%
+ 9 not observed (Remaining individuals, European (Finnish), Amish, East Asian, Middle Eastern, South Asian, Ashkenazi Jewish, African/African American, European (non-Finnish))
Triaged references · 8 PMIDs not cited in assessment
27413114 ↗ATM Mutations in Cancer: Therapeutic Implications.ONCOKB
30348496 ↗Inactive Atm abrogates DSB repair in mouse cerebellum more than does Atm loss, without causing a neurological phenotype.ONCOKB
30553448 ↗Loss of ATM positively regulates Rac1 activity and cellular migration through oxidative stress.ONCOKB
25741868 ↗Standards and guidelines for the interpretation of sequence variants: a joint consensus recommendation of the American College of Medical Genetics and Genomics and the Association for Molecular Pathology.CLINVAR
17508274 ↗Risk assessment and genetic counseling for hereditary breast and ovarian cancer: recommendations of the National Society of Genetic Counselors.CLINVAR
24366402 ↗Summaries for patients. Assessing the genetic risk for BRCA-related breast or ovarian cancer in women: recommendations from the U.S. Preventive Services Task Force.CLINVAR