| name | tooluniverse-variant-interpretation |
| description | Systematic clinical variant interpretation from raw variant calls to ACMG-classified recommendations with structural impact analysis. Aggregates evidence from ClinVar, gnomAD, CIViC, UniProt, and PDB across ACMG criteria. Produces pathogenicity scores (0-100), clinical recommendations, and treatment implications. Use when interpreting genetic variants, classifying variants of uncertain significance (VUS), performing ACMG variant classification, or translating variant calls to clinical actionability. |
Clinical Variant Interpreter
Systematic variant interpretation using ToolUniverse — from raw variant calls to ACMG-classified clinical recommendations with structural impact analysis.
Key Principles
- ACMG-Guided Classification - Follow ACMG/AMP 2015 guidelines with explicit evidence codes
- Structural Evidence Integration - Use AlphaFold2 for novel structural impact analysis
- Population Context - gnomAD frequencies with ancestry-specific data
- Gene-Disease Validity - ClinGen curation status for clinical relevance
- Actionable Output - Clear recommendations, not just classifications
- English-first queries - Always use English terms in tool calls
Triggers
Use when users:
- Ask about variant interpretation, classification, or pathogenicity
- Have VCF data needing clinical annotation
- Need ACMG classification for variants (especially VUS)
- Want structural impact analysis for missense variants
NOT for: Structural variants/CNVs → tooluniverse-structural-variant-analysis; Variant calling from BAM → tooluniverse-variant-analysis
Workflow (6 Phases)
Phase 1: Variant Identity & Normalization
Standardize notation (HGVS), map to gene/transcript/protein, determine consequence type.
| Tool | Purpose |
|---|
myvariant_query | Variant annotations from MyVariant.info (dbSNP, ClinVar, gnomAD) |
Ensembl_get_variant_info | Variant effect predictor data |
NCBI_gene_search | Gene information, RefSeq transcripts |
Capture: HGVS (c. and p.), gene symbol, Ensembl ID, transcript (MANE Select), consequence, amino acid change, exon/intron location.
Phase 2: Clinical Database Queries
| Tool | Purpose | Key Data |
|---|
clinvar_search | Existing classifications | Classification, review status, conditions |
gnomad_search | Population frequency | Overall AF, ancestry-specific AFs, homozygotes |
OMIM_search + OMIM_get_entry | Gene-disease | Inheritance pattern, phenotypes |
ClinGen_search_gene_validity | Gene curation | Gene-disease validity level |
ClinGen_search_dosage_sensitivity | Dosage sensitivity | HI/TS scores |
COSMIC_search_mutations | Somatic context | Cancer frequency, hotspot status |
DisGeNET_search_gene | Gene-disease associations | Evidence scores |
gnomAD frequency interpretation:
- Absent (0) → PM2 (Supporting Pathogenic)
- <0.01% → Rare, consistent with pathogenicity
- 0.01-0.1% → Check gene/disease prevalence
- >1% → BA1 (Stand-alone Benign)
Phase 3: Computational Predictions
| Tool | Purpose | Threshold |
|---|
myvariant_query (contains SIFT/PolyPhen/CADD) | Damaging predictions | CADD ≥25 = likely deleterious |
| SpliceAI (via myvariant or Ensembl) | Splice impact | Score ≥0.5 = high splice impact |
| Conservation (via Ensembl) | Cross-species alignment | PhyloP, GERP scores |
PP3 (Supporting Pathogenic): ≥3 concordant computational predictors agree "damaging"
BP4 (Supporting Benign): ≥3 concordant predictors agree "tolerated"
Phase 4: Structural Analysis (for VUS/novel missense)
| Tool | Purpose |
|---|
AlphaFold_get_prediction | Predicted protein structure |
PDB_search | Experimental crystal structures |
UniProt_search | Domain/feature annotations, active sites |
InterPro_search | Protein family/domain classification |
Assess: Is residue buried/surface? Domain/active site? Secondary structure? pLDDT confidence (>90 = very high, 70-90 = high, 50-70 = moderate, <50 = disordered)?
PM1: Apply if variant in established functional domain without benign variation.
Phase 5: Literature Evidence
| Tool | Purpose |
|---|
PubMed_search_articles | Functional studies, case reports (returns plain list) |
EuropePMC_search_articles | Broader literature |
CIViC_search | Cancer clinical evidence (if oncology) |
PS3 (Strong): Well-established functional study shows damaging effect
BS3 (Strong): Well-established functional study shows no effect
Phase 6: ACMG Classification
Key pathogenic evidence codes:
| Code | Strength | Criteria |
|---|
| PVS1 | Very Strong | LOF in gene where LOF is disease mechanism |
| PS1 | Strong | Same amino acid change as established pathogenic |
| PS3 | Strong | Functional studies confirm damaging |
| PM1 | Moderate | In critical functional domain |
| PM2 | Moderate | Absent from gnomAD |
| PP3 | Supporting | Computational predictions concordant "damaging" |
Key benign evidence codes:
| Code | Strength | Criteria |
|---|
| BA1 | Stand-alone | gnomAD AF >1% |
| BS1 | Strong | gnomAD AF higher than expected for disease |
| BS3 | Strong | Functional study shows no effect |
| BP4 | Supporting | Computational predictions concordant "tolerated" |
Classification rules:
- Pathogenic: 1 Very Strong + 1 Strong, OR 2 Strong + ≥1 Moderate
- Likely Pathogenic: 1 Very Strong + 1 Moderate, OR 1 Strong + 2 Moderate
- VUS: Criteria insufficient for either direction
- Likely Benign: 1 Strong + 1 Supporting benign
- Benign: 1 Stand-alone benign, OR ≥2 Strong benign
Special Scenarios
Novel Missense VUS: Phase 4 structural analysis critical → check if other pathogenic variants at same residue → AlphaFold2 → buried/surface? active site? conservation?
Truncating Variant: Check LOF mechanism → NMD escape (last exon)? → ClinGen LOF curation → PVS1 strength depends on LOF mechanism
Splice Variant: SpliceAI scores → canonical splice distance → in-frame skipping? → cryptic splice activation?
Report Template (9 sections)
- Variant Identity (HGVS, gene, transcript, consequence)
- Population Data (gnomAD frequencies, ancestry breakdown)
- Clinical Database Evidence (ClinVar, OMIM, ClinGen)
- Computational Predictions (SIFT, PolyPhen, CADD, SpliceAI)
- Structural Analysis (AlphaFold2/PDB, domain impact, confidence)
- Literature Evidence (functional studies, case reports)
- ACMG Classification (evidence codes, final classification + rationale)
- Clinical Recommendations (actionable: diagnostic, therapeutic, family screening)
- Limitations & Uncertainties
Minimum requirements: gnomAD overall + ≥3 ancestry groups, ≥3 computational predictors, ≥2 literature search strategies, all applicable ACMG codes listed.
Extended Reference: Full Python implementations, detailed tool parameter tables, NVIDIA NIM integration, example reports, and special scenario workflows are in REFERENCE.md.