For molecular modelers, one persistent challenge is managing the complexity of all-atom simulations. Long run times and computational resource limitations often hinder progress. Enter Martinize2 in SAMSON: a game-changing tool for creating coarse-grained (CG) models for the MARTINI force field, dramatically simplifying molecular systems and enhancing simulation efficiency. Here’s how this intuitive process can save you time and streamline your workflows.
Why Go Coarse-Grained?
Coarse-graining is all about reducing the complexity of your molecular model. Instead of representing every single atom, CG models group several atoms into larger units called CG beads. For example, in proteins, all amino acid backbone atoms can be represented by a single bead. This simplification not only accelerates simulations but also reduces memory usage, enabling you to focus on the essential interactions of your system.
Streamlined Workflow with Martinize2 in SAMSON
The Martinize2 extension integrates powerful tools like Vermouth into SAMSON to help you seamlessly convert atomistic structures into MARTINI CG models. Additionally, it generates the topology files you need for GROMACS simulations – all within a single platform. Let’s walk through the process:
1. Prepare Your Protein Structure
Starting with a clean atomistic structure ensures smooth coarse-graining. Use SAMSON’s Protein Preparation & Validation tutorial to clean your model by removing alternate locations, water, ions, and ligands. For instance, in this tutorial, the Ubiquitin protein (1UBQ) is used, but you can apply the same approach to your preferred structure.

2. Configure and Launch Martinize2
Load your atomistic structure into SAMSON, open the Martinize2 app, and select your system directly in the document view. Set the parameters for the MARTINI force field, including:
- The force field version (e.g.,
martini3001). - Position restraints (e.g., backbone, all, or none).
- Side chain corrections and neutral termini options.

Hover over the configuration options to access helpful tooltips and ensure you configure your system to your requirements. Once complete, select a results folder for the outputs and click “Create coarse-grained models.”
3. Review the Output
The results will be stored in a timestamped project folder. Each input model generates:
- PDB and GRO files for the CG model.
- Topology files (e.g.,
.top,.itp). - Logs documenting the Martinize2 commands.
For single input models, SAMSON automatically loads the CG model, allowing you to visualize the simplified structure as connected beads effectively.

Faster Simulations, Without Compromise
By creating CG models using Martinize2 within SAMSON, you can dramatically speed up your simulations without compromising critical molecular interactions. This streamlined method supports single structures and even systems containing multiple replicas—perfect for more extensive studies.
To dive deeper and explore advanced setups, visit the original documentation page at this link.
Note: SAMSON and all SAMSON Extensions are free for non-commercial use. You can download SAMSON here: https://www.samson-connect.net.
