Protein-protein binding free energy¶
This example calculates the binding free energy of a protein-protein complex with the single-trajectory approximation. The second protein is treated as the ligand.
-
Protocol
Single trajectory
-
System
Protein-protein complex
-
Solvent model
GB-Neck2 (
igb=8) -
Bundled test
gmx_MMPBSA_test -t 4
Before you begin¶
The manual workflow uses the following files and selections:
-
Calculation settings
mmpbsa.in(-i) -
GROMACS system
Structure
com.tpr(-cs) and topologytopol.top(-cp). Keep thetoppardirectory containing the referenced*.itpfiles besidetopol.top. -
Trajectory
PBC-corrected and fitted trajectory
com_traj.xtc(-ct) -
Molecular selections
Index
index.ndx(-ci) with theSOLU_chain1andSOLU_chain2groups (-cg)
A complex reference structure without hydrogens may also be supplied with -cr. It is optional but recommended when you need specific chain IDs or residue numbering. See the complete command-line reference for all options.
Run the example¶
Run the bundled test¶
The quickest way to reproduce this example is through the test runner:
See the gmx_MMPBSA_test documentation for download, selection, and cleanup options.
Run it manually¶
Download the protein-protein example as a ZIP archive.
Extract the archive, change to the Protein_protein directory, and choose either the serial or MPI command. You can also view the example files on GitHub before downloading them.
Configure the calculation¶
The example uses the minimal mmpbsa.in shown first below. The all-options version was generated with gmx_MMPBSA --create_input gb and then adapted with the example-specific values. The concise block is the runnable starting point; the generated block exposes additional options and defaults, so the two blocks are not textually identical.
For this example, -cp topol.top supplies the GROMACS topology parameters used by the calculation. The topology already contains the bonded, nonbonded, charge, ligand, and ion parameters required by the calculation.
| mmpbsa.in | |
|---|---|
Keep in mind
This input provides a practical starting point and can serve as the basis for production calculations. Review the available input-file options, their accepted values, and adjust settings that depend on your system or protocol. Additional sample inputs are available here.
How this example works¶
The ST approximation reads the complex simulation and extracts the two protein components from every selected frame. SOLU_chain1 defines the 478-atom receptor and SOLU_chain2 defines the 130-atom protein ligand. Although the source trajectory is solvated, these groups select the 608-atom protein-protein solute for analysis.
The calculation processes frames 1 through 10 with GB-Neck2 (igb=8), the matching mbondi3 radii (PBRadii=4), and a salt concentration of 0.15 M.
Expected outputs¶
A successful calculation produces:
FINAL_RESULTS_MMPBSA.dat: the MM/GBSA summary and binding-energy statistics.FINAL_RESULTS_MMPBSA.csv: the per-frame energy terms requested with-eo.
Analyze the results¶
Open the results with gmx_MMPBSA_ana for interactive inspection and plotting. See the gmx_MMPBSA_ana documentation for usage details.
Created: October 17, 2020 22:44:10