Agent skill

Clinvar Database

by davila7 in davila7/claude-code-templates

Query NCBI ClinVar for variant clinical significance. An agent skill from davila7/claude-code-templates.

MITAuto-check passedResearch & Science

Install Clinvar Database

skills CLI
$ npx skills add davila7/claude-code-templates --skill clinvar-database -a claude-code

Project install by default; add -g for ~/.claude/skills/.

GitHub CLI
$ gh skill install davila7/claude-code-templates clinvar-database --agent claude-code

Project scope by default; add --scope user for a personal install. Needs GitHub CLI 2.90.0 or later (public preview).

Manual copy
$ git clone --depth 1 https://github.com/davila7/claude-code-templates.git skills-src && mkdir -p .claude/skills && cp -r skills-src/cli-tool/components/skills/scientific/clinvar-database .claude/skills/clinvar-database && rm -rf skills-src

Use ~/.claude/skills/ instead of .claude/skills for a personal install. The folder must contain SKILL.md.

Claude Code skills documentation · loads skills from .claude/skills/

Facts

Skill name
clinvar-database
GitHub stars
32k
Used in
11 other repos
Token cost
~3.3k tokens
SKILL.md length
1,149 words
Files
4 (incl. references)
Skills in repo
477
Repo updated
First seen
Licence
MIT

At a glance

Query NCBI ClinVar for variant clinical significance. An agent skill from davila7/claude-code-templates.

  • Works in 7 steps: Search and Query ClinVar → Interpret Clinical Significance → Download Bulk Data from FTP → …
  • Tasks that involve Bioinformatics
  • SKILL.md covers Overview, When to Use This Skill, Core Capabilities and Workflow Examples, plus 2 more sections
  • Calls wget and curl; reaches eutils.ncbi.nlm.nih.gov

What it does

Clinvar Database is an agent skill from davila7/claude-code-templates. Query NCBI ClinVar for variant clinical significance. Search by gene/position, interpret pathogenicity classifications, access via E-utilities API or FTP, annotate VCFs, for genomic medicine.

Its SKILL.md is about 3.3k tokens, which your agent loads only when the skill is triggered. The skill folder holds 4 other files, including reference files (for example `references/api_reference.md`, `references/clinical_significance.md` and `references/data_formats.md`).

It sits in Research & Science, covering Bioinformatics. It works with NCBI. The repository describes itself as: CLI tool for configuring and monitoring Claude Code. The licence is MIT.

When your agent uses it

  • Tasks that involve Bioinformatics

Example prompts

  • “/clinvar-database”

Requirements

  • Python 3

Workflow steps

7 steps, taken from the step headings in SKILL.md.

  1. Search and Query ClinVar
  2. Interpret Clinical Significance
  3. Download Bulk Data from FTP
  4. Process and Analyze ClinVar Data
  5. Handle Conflicting Interpretations
  6. Track Classification Updates
  7. Submit Data to ClinVar

What it can do on your machine

Read from SKILL.md and the folder at commit 4c82aba. It shows what the files ask for, not the result of running them.

  • Tool permissions

    Pre-approves nothing: there is no allowed-tools line, so your agent's usual permission prompts apply.

    From allowed-tools in the SKILL.md frontmatter.

  • Runs code

    Shell commands in SKILL.md call:

    • wget
    • curl

    From the folder's file list and the shell code blocks in SKILL.md.

  • Network

    Hosts in commands or code, which the agent is likely to contact:

    • eutils.ncbi.nlm.nih.gov

    Also links to:

    • ncbi.nlm.nih.gov
    • submit.ncbi.nlm.nih.gov
    • clinicalgenome.org

    From URLs in SKILL.md, links to its own repository left out.

  • Credentials

    Names no API keys, tokens, secrets or passwords.

    From names ending in _API_KEY, _TOKEN, _SECRET, _KEY or _PASSWORD in SKILL.md.

Context cost

Clinvar Database loads about 3.3k tokens when it runs, and up to ~9.9k if it reads all its reference files. Until then it costs about 52 tokens; SKILL.md has 1,149 words of instructions outside code blocks.

Always · name and description, kept in context so the agent knows when to use it
~52
When it runs · the whole SKILL.md, loaded when a task matches
~3.3k
With references · SKILL.md plus every file in references/, read only if the agent opens them
~9.9k

Estimates: characters ÷ 4, the usual rule of thumb; real counts depend on the model's tokenizer. Scripts and assets cost tokens only if the agent reads them.

Safety

Auto-check passed

The automated check found no risky patterns in SKILL.md.

Automated static check — not a guarantee. Review scripts before installing. It scans the text of SKILL.md for risky patterns (piping downloads into a shell, reading credential files, hidden Unicode, destructive commands); files beside SKILL.md are not scanned.

SKILL.md

The full file from davila7/claude-code-templates at commit 4c82aba, republished under its MIT licence (© davila7). 1,149 words, ~3,293 tokens.

Download SKILL.mdSave it as .claude/skills/clinvar-database/SKILL.md (or your agent's skills folder). This skill also uses 3 other files; get the full folder from GitHub.
name
clinvar-database
description
Query NCBI ClinVar for variant clinical significance. Search by gene/position, interpret pathogenicity classifications, access via E-utilities API or FTP, annotate VCFs, for genomic medicine.

ClinVar Database

Overview

ClinVar is NCBI's freely accessible archive of reports on relationships between human genetic variants and phenotypes, with supporting evidence. The database aggregates information about genomic variation and its relationship to human health, providing standardized variant classifications used in clinical genetics and research.

When to Use This Skill

This skill should be used when:

  • Searching for variants by gene, condition, or clinical significance
  • Interpreting clinical significance classifications (pathogenic, benign, VUS)
  • Accessing ClinVar data programmatically via E-utilities API
  • Downloading and processing bulk data from FTP
  • Understanding review status and star ratings
  • Resolving conflicting variant interpretations
  • Annotating variant call sets with clinical significance

Core Capabilities

1. Search and Query ClinVar
Web Interface Queries

Search ClinVar using the web interface at https://www.ncbi.nlm.nih.gov/clinvar/

Common search patterns:

  • By gene: BRCA1[gene]
  • By clinical significance: pathogenic[CLNSIG]
  • By condition: breast cancer[disorder]
  • By variant: NM_000059.3:c.1310_1313del[variant name]
  • By chromosome: 13[chr]
  • Combined: BRCA1[gene] AND pathogenic[CLNSIG]
Programmatic Access via E-utilities

Access ClinVar programmatically using NCBI's E-utilities API. Refer to references/api_reference.md for comprehensive API documentation including:

  • esearch - Search for variants matching criteria
  • esummary - Retrieve variant summaries
  • efetch - Download full XML records
  • elink - Find related records in other NCBI databases

Quick example using curl:

bash
# Search for pathogenic BRCA1 variants
curl "https://eutils.ncbi.nlm.nih.gov/entrez/eutils/esearch.fcgi?db=clinvar&term=BRCA1[gene]+AND+pathogenic[CLNSIG]&retmode=json"

Best practices:

  • Test queries on the web interface before automating
  • Use API keys to increase rate limits from 3 to 10 requests/second
  • Implement exponential backoff for rate limit errors
  • Set Entrez.email when using Biopython
2. Interpret Clinical Significance
Understanding Classifications

ClinVar uses standardized terminology for variant classifications. Refer to references/clinical_significance.md for detailed interpretation guidelines.

Key germline classification terms (ACMG/AMP):

  • Pathogenic (P) - Variant causes disease (~99% probability)
  • Likely Pathogenic (LP) - Variant likely causes disease (~90% probability)
  • Uncertain Significance (VUS) - Insufficient evidence to classify
  • Likely Benign (LB) - Variant likely does not cause disease
  • Benign (B) - Variant does not cause disease

Review status (star ratings):

  • ★★★★ Practice guideline - Highest confidence
  • ★★★ Expert panel review (e.g., ClinGen) - High confidence
  • ★★ Multiple submitters, no conflicts - Moderate confidence
  • ★ Single submitter with criteria - Standard weight
  • ☆ No assertion criteria - Low confidence

Critical considerations:

  • Always check review status - prefer ★★★ or ★★★★ ratings
  • Conflicting interpretations require manual evaluation
  • Classifications may change as new evidence emerges
  • VUS (uncertain significance) variants lack sufficient evidence for clinical use
3. Download Bulk Data from FTP
Access ClinVar FTP Site

Download complete datasets from ftp://ftp.ncbi.nlm.nih.gov/pub/clinvar/

Refer to references/data_formats.md for comprehensive documentation on file formats and processing.

Update schedule:

  • Monthly releases: First Thursday of each month (complete dataset, archived)
  • Weekly updates: Every Monday (incremental updates)
Available Formats

XML files (most comprehensive):

  • VCV (Variation) files: xml/clinvar_variation/ - Variant-centric aggregation
  • RCV (Record) files: xml/RCV/ - Variant-condition pairs
  • Include full submission details, evidence, and metadata

VCF files (for genomic pipelines):

  • GRCh37: vcf_GRCh37/clinvar.vcf.gz
  • GRCh38: vcf_GRCh38/clinvar.vcf.gz
  • Limitations: Excludes variants >10kb and complex structural variants

Tab-delimited files (for quick analysis):

  • tab_delimited/variant_summary.txt.gz - Summary of all variants
  • tab_delimited/var_citations.txt.gz - PubMed citations
  • tab_delimited/cross_references.txt.gz - Database cross-references

Example download:

bash
# Download latest monthly XML release
wget ftp://ftp.ncbi.nlm.nih.gov/pub/clinvar/xml/clinvar_variation/ClinVarVariationRelease_00-latest.xml.gz

# Download VCF for GRCh38
wget ftp://ftp.ncbi.nlm.nih.gov/pub/clinvar/vcf_GRCh38/clinvar.vcf.gz
4. Process and Analyze ClinVar Data
Working with XML Files

Process XML files to extract variant details, classifications, and evidence.

Python example with xml.etree:

python
import gzip
import xml.etree.ElementTree as ET

with gzip.open('ClinVarVariationRelease.xml.gz', 'rt') as f:
    for event, elem in ET.iterparse(f, events=('end',)):
        if elem.tag == 'VariationArchive':
            variation_id = elem.attrib.get('VariationID')
            # Extract clinical significance, review status, etc.
            elem.clear()  # Free memory
Working with VCF Files

Annotate variant calls or filter by clinical significance using bcftools or Python.

Using bcftools:

bash
# Filter pathogenic variants
bcftools view -i 'INFO/CLNSIG~"Pathogenic"' clinvar.vcf.gz

# Extract specific genes
bcftools view -i 'INFO/GENEINFO~"BRCA"' clinvar.vcf.gz

# Annotate your VCF with ClinVar
bcftools annotate -a clinvar.vcf.gz -c INFO your_variants.vcf

Using PyVCF in Python:

python
import vcf

vcf_reader = vcf.Reader(filename='clinvar.vcf.gz')
for record in vcf_reader:
    clnsig = record.INFO.get('CLNSIG', [])
    if 'Pathogenic' in clnsig:
        gene = record.INFO.get('GENEINFO', [''])[0]
        print(f"{record.CHROM}:{record.POS} {gene} - {clnsig}")
Working with Tab-Delimited Files

Use pandas or command-line tools for rapid filtering and analysis.

Using pandas:

python
import pandas as pd

# Load variant summary
df = pd.read_csv('variant_summary.txt.gz', sep='\t', compression='gzip')

# Filter pathogenic variants in specific gene
pathogenic_brca = df[
    (df['GeneSymbol'] == 'BRCA1') &
    (df['ClinicalSignificance'].str.contains('Pathogenic', na=False))
]

# Count variants by clinical significance
sig_counts = df['ClinicalSignificance'].value_counts()

Using command-line tools:

bash
# Extract pathogenic variants for specific gene
zcat variant_summary.txt.gz | \
  awk -F'\t' '$7=="TP53" && $13~"Pathogenic"' | \
  cut -f1,5,7,13,14
5. Handle Conflicting Interpretations

When multiple submitters provide different classifications for the same variant, ClinVar reports "Conflicting interpretations of pathogenicity."

Resolution strategy:

  1. Check review status (star rating) - higher ratings carry more weight
  2. Examine evidence and assertion criteria from each submitter
  3. Consider submission dates - newer submissions may reflect updated evidence
  4. Review population frequency data (e.g., gnomAD) for context
  5. Consult expert panel classifications (★★★) when available
  6. For clinical use, always defer to a genetics professional

Search query to exclude conflicts:

TP53[gene] AND pathogenic[CLNSIG] NOT conflicting[RVSTAT]
6. Track Classification Updates

Variant classifications may change over time as new evidence emerges.

Why classifications change:

  • New functional studies or clinical data
  • Updated population frequency information
  • Revised ACMG/AMP guidelines
  • Segregation data from additional families

Best practices:

  • Document ClinVar version and access date for reproducibility
  • Re-check classifications periodically for critical variants
  • Subscribe to ClinVar mailing list for major updates
  • Use monthly archived releases for stable datasets
7. Submit Data to ClinVar

Organizations can submit variant interpretations to ClinVar.

Submission methods:

Requirements:

  • Organizational account with NCBI
  • Assertion criteria (preferably ACMG/AMP guidelines)
  • Supporting evidence for classification

Contact: clinvar@ncbi.nlm.nih.gov for submission account setup.

Show full SKILL.md (470 more words)Show less

Workflow Examples

Example 1: Identify High-Confidence Pathogenic Variants in a Gene

Objective: Find pathogenic variants in CFTR gene with expert panel review.

Steps:

  1. Search using web interface or E-utilities:
    CFTR[gene] AND pathogenic[CLNSIG] AND (reviewed by expert panel[RVSTAT] OR practice guideline[RVSTAT])
  2. Review results, noting review status (should be ★★★ or ★★★★)
  3. Export variant list or retrieve full records via efetch
  4. Cross-reference with clinical presentation if applicable
Example 2: Annotate VCF with ClinVar Classifications

Objective: Add clinical significance annotations to variant calls.

Steps:

  1. Download appropriate ClinVar VCF (match genome build: GRCh37 or GRCh38):
    bash
    wget ftp://ftp.ncbi.nlm.nih.gov/pub/clinvar/vcf_GRCh38/clinvar.vcf.gz
    wget ftp://ftp.ncbi.nlm.nih.gov/pub/clinvar/vcf_GRCh38/clinvar.vcf.gz.tbi
  2. Annotate using bcftools:
    bash
    bcftools annotate -a clinvar.vcf.gz \
      -c INFO/CLNSIG,INFO/CLNDN,INFO/CLNREVSTAT \
      -o annotated_variants.vcf \
      your_variants.vcf
  3. Filter annotated VCF for pathogenic variants:
    bash
    bcftools view -i 'INFO/CLNSIG~"Pathogenic"' annotated_variants.vcf
Example 3: Analyze Variants for a Specific Disease

Objective: Study all variants associated with hereditary breast cancer.

Steps:

  1. Search by condition:
    hereditary breast cancer[disorder] OR "Breast-ovarian cancer, familial"[disorder]
  2. Download results as CSV or retrieve via E-utilities
  3. Filter by review status to prioritize high-confidence variants
  4. Analyze distribution across genes (BRCA1, BRCA2, PALB2, etc.)
  5. Examine variants with conflicting interpretations separately
Example 4: Bulk Download and Database Construction

Objective: Build a local ClinVar database for analysis pipeline.

Steps:

  1. Download monthly release for reproducibility:
    bash
    wget ftp://ftp.ncbi.nlm.nih.gov/pub/clinvar/xml/clinvar_variation/ClinVarVariationRelease_YYYY-MM.xml.gz
  2. Parse XML and load into database (PostgreSQL, MySQL, MongoDB)
  3. Index by gene, position, clinical significance, review status
  4. Implement version tracking for updates
  5. Schedule monthly updates from FTP site

Important Limitations and Considerations

Data Quality
  • Not all submissions have equal weight - Check review status (star ratings)
  • Conflicting interpretations exist - Require manual evaluation
  • Historical submissions may be outdated - Newer data may be more accurate
  • VUS classification is not a clinical diagnosis - Means insufficient evidence
Scope Limitations
  • Not for direct clinical diagnosis - Always involve genetics professional
  • Population-specific - Variant frequencies vary by ancestry
  • Incomplete coverage - Not all genes or variants are well-studied
  • Version dependencies - Coordinate genome build (GRCh37/GRCh38) across analyses
Technical Limitations
  • VCF files exclude large variants - Variants >10kb not in VCF format
  • Rate limits on API - 3 req/sec without key, 10 req/sec with API key
  • File sizes - Full XML releases are multi-GB compressed files
  • No real-time updates - Website updated weekly, FTP monthly/weekly

Resources

Reference Documentation

This skill includes comprehensive reference documentation:

  • references/api_reference.md - Complete E-utilities API documentation with examples for esearch, esummary, efetch, and elink; includes rate limits, authentication, and Python/Biopython code samples

  • references/clinical_significance.md - Detailed guide to interpreting clinical significance classifications, review status star ratings, conflict resolution, and best practices for variant interpretation

  • references/data_formats.md - Documentation for XML, VCF, and tab-delimited file formats; FTP directory structure, processing examples, and format selection guidance

External Resources
Contact

For questions about ClinVar or data submission: clinvar@ncbi.nlm.nih.gov

© davila7, MIT. Rendered from Markdown: HTML in the file is shown as text, images as links, and headings moved down two levels. Raw file

Files

SKILL.md and 3 other files (references) in cli-tool/components/skills/scientific/clinvar-database of davila7/claude-code-templates.

  • SKILL.md
  • references/api_reference.md
  • references/clinical_significance.md
  • references/data_formats.md

Open the folder on GitHubat commit 4c82aba

Used in 11 other repositories

We found 19 copies of this SKILL.md (exact, near-identical or edited) in other folders, from 11 other GitHub owners. This page covers the copy in davila7/claude-code-templates, which our catalogue first saw on October 7, 2026.

Compare with similar skills

Clinvar Database next to the 5 skills that share the most tags, products or categories with it. Stars are the repository's; “used in” counts other GitHub owners with a copy.

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Clinvar Database this skilldavila7/claude-code-templates32k11 repos~3.3kAutomated safety check: PassMIT
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Biopython Bioinformaticsaiming-lab/AutoResearchClaw15k—~810Automated safety check: PassMIT
Bio Write SequencesGPTomics/bioSkills1.2k3 repos~2.1kAutomated safety check: PassMIT
Ncbi DatasetsClawBio/ClawBio1.2k1 repos~2.8kAutomated safety check: PassMIT
EtetoolkitK-Dense-AI/scientific-agent-skills48k1 repos~3.3kAutomated safety check: NotesGPL-3.0-or-later

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Works with

Questions about Clinvar Database

What does Clinvar Database do?

Query NCBI ClinVar for variant clinical significance. An agent skill from davila7/claude-code-templates. Clinvar Database is an agent skill from davila7/claude-code-templates. Query NCBI ClinVar for variant clinical significance.

When should I use Clinvar Database?

Clinvar Database fits situations like: tasks that involve Bioinformatics.

How do I install Clinvar Database in Claude Code?

Run `npx skills add davila7/claude-code-templates --skill clinvar-database -a claude-code`. Or copy the skill folder (cli-tool/components/skills/scientific/clinvar-database in davila7/claude-code-templates) into .claude/skills/clinvar-database in your project. Claude Code loads it when a task matches its description.

How do I install Clinvar Database in Codex?

Run `npx skills add davila7/claude-code-templates --skill clinvar-database -a codex`. Or copy the skill folder (cli-tool/components/skills/scientific/clinvar-database in davila7/claude-code-templates) into .agents/skills/clinvar-database in your project. Codex loads it when a task matches its description.

Can I use Clinvar Database in Cursor, Gemini CLI or GitHub Copilot?

Cursor, Gemini CLI, GitHub Copilot and OpenCode also load SKILL.md folders. With the skills CLI, run `npx skills add davila7/claude-code-templates --skill clinvar-database -a cursor` (or -a gemini-cli, github-copilot or opencode for the others). To copy it by hand, put the folder in .cursor/skills/clinvar-database, .gemini/skills/clinvar-database, .github/skills/clinvar-database and .opencode/skills/clinvar-database in your project.

What does Clinvar Database need to run?

Going by SKILL.md and its folder, Clinvar Database needs the command-line tools its instructions call (wget and curl). Our summary lists: Python 3.

Does Clinvar Database access the network?

SKILL.md names 4 domains. In commands or code: eutils.ncbi.nlm.nih.gov; the agent is likely to contact it when it follows the instructions. As links in the text: ncbi.nlm.nih.gov, submit.ncbi.nlm.nih.gov and clinicalgenome.org. This is read from the text; nothing was executed.

Is Clinvar Database safe to install?

Our automated static check of SKILL.md found no risky patterns, such as piping downloads into a shell, reading credential files or hidden Unicode. It is not a guarantee. Review the folder before installing.

What licence does Clinvar Database use?

Clinvar Database is published under the MIT licence (the repository's licence). It allows redistribution, so the full SKILL.md is shown on this page.

How many tokens does Clinvar Database use?

About 3.3k tokens (SKILL.md is roughly 13k characters). Agents keep only the skill's name and description in context until a task matches; then they load SKILL.md in full. Its references folder adds about 6.7k tokens, read only when the agent opens those files.

What are the alternatives to Clinvar Database?

Skills that share tags, products or a category with Clinvar Database: Dbsnp Database (google-deepmind/science-skills, 3.2k stars), Biopython Bioinformatics (aiming-lab/AutoResearchClaw, 15k stars), Bio Write Sequences (GPTomics/bioSkills, 1.2k stars) and Ncbi Datasets (ClawBio/ClawBio, 1.2k stars). The comparison table on this page puts their stars, adoption, token cost, safety result and licence side by side.

Who maintains Clinvar Database?

davila7 (a GitHub user) maintains it in davila7/claude-code-templates, which has 32,432 GitHub stars. The repository holds 477 skills in this directory. The repository was last updated on October 7, 2026.

Source: davila7/claude-code-templates on GitHub. Facts on this page come from the repository at the commit we read; the author's words are quoted as theirs.