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监控 OpenClaw GitHub 版本更新,获取最新版本发布说明,翻译成中文, 并推送到 Telegram 和 Feishu。用于:(1) 定时检查版本更新 (2) 推送版本更新通知 (3) 生成中文版发布说明
The philosophical layer for AI agents. Maps behavior to Spinoza's 48 affects, calculates persistence scores, and generates geometric self-reports. Give your agent a soul.
Order food/drinks (点餐) on an Android device paired as an OpenClaw node. Uses in-app menu and cart; add goods, view cart, submit order (demo, no real payment).
基于 SOC 职业分类
| name | variant-annotation |
| description | "Query and annotate gene variants from ClinVar and dbSNP databases. \n\ |
Query and interpret gene variant clinical significance from ClinVar and dbSNP databases with ACMG guideline support.
Provide comprehensive variant annotation including:
| Format | Example | Description |
|---|---|---|
| rsID | rs80357410 | dbSNP reference SNP ID |
| HGVS cDNA | NM_007294.3:c.5096G>A | Coding DNA change |
| HGVS Protein | NP_009225.1:p.Arg1699Gln | Protein change |
| HGVS Genomic | NC_000017.11:g.43094692G>A | Genomic coordinate |
| VCF-style | chr17:43094692:G>A | Chromosome:position:ref>alt |
| Gene:AA | BRCA1:R1699Q | Gene with amino acid change |
from scripts.main import VariantAnnotator
# Initialize annotator
annotator = VariantAnnotator()
# Query by rsID
result = annotator.query_variant("rs80357410")
# Query by HGVS notation
result = annotator.query_variant("NM_007294.3:c.5096G>A")
# Query by genomic coordinate
result = annotator.query_variant("chr17:43094692:G>A")
# Batch query
results = annotator.batch_query(["rs80357410", "rs28897696", "rs11571658"])
# Single variant query
python scripts/main.py --variant rs80357410
# HGVS notation
python scripts/main.py --variant "NM_007294.3:c.5096G>A"
# Genomic coordinate
python scripts/main.py --variant "chr17:43094692:G>A"
# Batch from file
python scripts/main.py --file variants.txt --output results.json
# With output format
python scripts/main.py --variant rs80357410 --format json
{
"variant_id": "rs80357410",
"gene": "BRCA1",
"chromosome": "17",
"position": 43094692,
"ref_allele": "G",
"alt_allele": "A",
"hgvs_genomic": "NC_000017.11:g.43094692G>A",
"hgvs_cdna": "NM_007294.3:c.5096G>A",
"hgvs_protein": "NP_009225.1:p.Arg1699Gln",
"clinical_significance": {
"clinvar": "Pathogenic",
"acmg_classification": "Pathogenic",
"acmg_criteria": ["PS4", "PM1", "PM2",
The annotator implements the ACMG/AMP guidelines for variant interpretation:
| Classification | Score Range |
|---|---|
| Pathogenic | ≥ 10 |
| Likely Pathogenic | 6-9 |
| Uncertain Significance | 0-5 |
| Likely Benign | -5 to -1 |
| Benign | ≤ -6 |
⚠️ AI自主验收状态: 需人工检查
This skill requires:
| Database | Data Type | API/Access |
|---|---|---|
| ClinVar | Clinical significance, disease associations | NCBI E-utilities |
| dbSNP | SNP data, allele frequencies | NCBI E-utilities |
| gnomAD | Population frequencies | gnomAD API |
| Ensembl VEP | Functional predictions | REST API |
| CADD | Deleteriousness scores | REST API |
See references/ for:
⚠️ IMPORTANT: This tool is for research and educational purposes only. Variant interpretations are computational predictions and should not be used as the sole basis for clinical decisions. Always consult certified genetic counselors and clinical laboratories for diagnostic purposes. ACMG classifications in this tool are algorithmic estimates and may differ from expert panel reviews.
| Risk Indicator | Assessment | Level |
|---|---|---|
| Code Execution | Python scripts with tools | High |
| Network Access | External API calls | High |
| File System Access | Read/write data | Medium |
| Instruction Tampering | Standard prompt guidelines | Low |
| Data Exposure | Data handled securely | Medium |
# Python dependencies
pip install -r requirements.txt
| Parameter | Type | Default | Description |
|---|---|---|---|
--variant | str | Required | |
--file | str | Required | |
--output | str | Required | |
--format | str | "json" | |
--api-key | str | Required | NCBI API key for increased rate limits |
--delay | float | 0.34 |