| name | end-to-end-protein-design-workflow |
| description | End-to-end protein design pipeline guide across preparation, generation, validation, and filtering. Use this skill when: (1) Starting a new protein design project, (2) Need step-by-step workflow guidance, (3) Understanding the full design pipeline, (4) Planning compute resources and timelines, (5) Integrating multiple design tools.
For tool selection, use binder-design-tool-selection. For QC thresholds, use protein-design-qc.
|
| license | MIT |
| category | orchestration |
| tags | ["guidance","pipeline","workflow"] |
End-to-End Protein Design Workflow
Plain-language role: Use this skill when you want the full pipeline, from target preparation through final QC.
Standard binder design pipeline
Overview
Target Preparation --> Backbone Generation --> Sequence Design
| | |
v v v
(pdb skill) (rfdiffusion) (proteinmpnn)
| |
v v
Structure Validation --> Filtering
| |
v v
(alphafold2-multimer/chai1-structure-prediction) (protein-design-qc)
Phase 1: Target preparation
1.1 Obtain target structure
curl -o target.pdb "https://files.rcsb.org/download/XXXX.pdb"
1.2 Clean and prepare
1.3 Select hotspots
- Choose 3-6 exposed residues
- Prefer charged/aromatic (K, R, E, D, W, Y, F)
- Check surface accessibility
- Verify residue numbering
Output: target_prepared.pdb, hotspot list
Phase 2: Backbone generation
Option A: RFdiffusion (diverse exploration)
modal run modal_rfdiffusion.py \
--pdb target_prepared.pdb \
--contigs "A1-150/0 70-100" \
--hotspot "A45,A67,A89" \
--num-designs 500
Option B: BindCraft (end-to-end)
modal run modal_bindcraft.py \
--target-pdb target_prepared.pdb \
--hotspots "A45,A67,A89" \
--num-designs 100
Output: 100-500 backbone PDBs
Phase 3: Sequence design
For RFdiffusion backbones
for backbone in backbones/*.pdb; do
modal run modal_proteinmpnn.py \
--pdb-path "$backbone" \
--num-seq-per-target 8 \
--sampling-temp 0.1
done
Output: 8 sequences per backbone (800-4000 total)
Phase 4: Structure validation
Predict complexes
modal run modal_colabfold.py \
--input-faa all_sequences.fasta \
--out-dir predictions/
Output: AF2 predictions with pLDDT, ipTM, PAE
Phase 5: Filtering and selection
Apply standard thresholds
import pandas as pd
designs = pd.read_csv('all_metrics.csv')
filtered = designs[
(designs['pLDDT'] > 0.85) &
(designs['ipTM'] > 0.50) &
(designs['PAE_interface'] < 10) &
(designs['scRMSD'] < 2.0) &
(designs['esm2_pll'] > 0.0)
]
filtered['score'] = (
0.3 * filtered['pLDDT'] +
0.3 * filtered['ipTM'] +
0.2 * (1 - filtered['PAE_interface'] / 20) +
0.2 * filtered['esm2_pll']
)
top_designs = filtered.nlargest(50, 'score')
Output: 50-200 filtered candidates
Resource planning
Compute requirements
| Stage | GPU | Time (100 designs) |
|---|
| RFdiffusion | A10G | 30 min |
| ProteinMPNN | T4 | 15 min |
| ColabFold | A100 | 4-8 hours |
| Filtering | CPU | 15 min |
Total timeline
- Small campaign (100 designs): 8-12 hours
- Medium campaign (500 designs): 24-48 hours
- Large campaign (1000+ designs): 2-5 days
Quality checkpoints
After backbone generation
After sequence design
After validation
Final selection
Common issues
| Problem | Solution |
|---|
| Low ipTM | Check hotspots, increase designs |
| Poor diversity | Higher temperature, more backbones |
| High scRMSD | Backbone may be unusual |
| Low pLDDT | Check design quality |
Advanced workflows
Multi-tool combination
- RFdiffusion for initial backbones
- ColabDesign for refinement
- ProteinMPNN diversification
- AF2 final validation
Iterative refinement
- Run initial campaign
- Analyze failures
- Adjust hotspots/parameters
- Repeat with insights
Inputs
- A starting project goal, target structure context, and desired validation depth.
- Constraints on compute, turnaround time, and expected throughput.
- Optional prior campaign results that should shape the next iteration.
Outputs
- An end-to-end workflow describing target prep, generation, sequence design, validation, and QC.
- A practical execution order across the specialized protein design skills.
- A shared mental model for where each tool fits in the campaign funnel.
Next Step
Start with pdb for target preparation, then follow the recommended generation and validation path through the linked skills.