Trajectory SP566
Force field:
martini_v2.2P
Simulation length (ns): 5000
Electric field (kJ mol-1 nm-1 e-1): 0
Temperature (K): 300 (v-rescale)
Pressure (bar): 1 (parrinello-rahman semiisotropic)
Number of particles: 22767
Time step (fs) : 25
Software: GROMACS 2020
Simulation length (ns): 5000
Electric field (kJ mol-1 nm-1 e-1): 0
Temperature (K): 300 (v-rescale)
Pressure (bar): 1 (parrinello-rahman semiisotropic)
Number of particles: 22767
Time step (fs) : 25
Software: GROMACS 2020
Supercomputer:
Finisterrae II CESGA
Peptides: P95 DRAMP18193
Lipids: DOPC, DOPE, DOPS, DPSM
Heteromolecules: CHOL
Ions: NA
Water model: PW
Peptides: P95 DRAMP18193
Lipids: DOPC, DOPE, DOPS, DPSM
Heteromolecules: CHOL
Ions: NA
Water model: PW
Sequence :
KRFKKFFKKVKKSVKKRLKKIFKKPMVIGVTIPF
Total charge (e): +15
Number of residues: 34
By amino acid: Basic: 15 Acidic: 0 Hydrophobic: 17 Polar: 2 Electrostatic Dipolar Moment (e nm): 17.4
Longitudinal (e nm): 17.2 Transversal (e nm): 2.38 Hydrophobic Dipolar Moment (nm): 66.8
Longitudinal (nm): 66.5 Transversal (nm): 6.18 Secondary structure: Helix
Activity:
Download Files
ITP file. JSON file. PDB file.
Click on any component to highlight it from the plot.
Upper leaflet
Lower leaflet
Lipids
Membrane model for: DOPC:DOPE:DOPS:DPSM:CHOL (2:2:1:0:2 / 1:2:4:3:5) (Healthy mammal)
DOPC
1,2-dioleoyl-sn-glycero-3-phosphocholine
Total charge (e): 0
See DOPC lipid
Download ITP File. Download PDB File.
DOPE
1,2-dioleoyl-sn-glycero-3-phosphoethanolamine
Total charge (e): 0
See DOPE lipid
Download ITP File. Download PDB File.
DOPS
1,2-dioleoyl-sn-glycero-3-phospho-L-serine
Total charge (e): -1
See DOPS lipid
Download ITP File. Download PDB File.
DPSM
Sphingomyelin C(d18:1/18:0) N-stearoyl-D-erythro tails
Total charge (e): 0
See DPSM lipid
Download ITP File. Download PDB File.
Last snapshot
Total contacts per residue
Number of total contacts per residue type:
Number of contacts between each residue of the peptide backbone and the different lipid types, averaged over the last microsecond and using a cut-off of 0.6 nm.
Molecular Dynamics based descriptors
Average and standard deviation,
calculated using the autocorrelation function (for time
series)
or the width of the distribution, for the last microsecond
of
the trajectory
Area per lipid
Membrane (nm2): 0.76408 ± 0.00088
Upper leaflet (nm2): 0.76408 ± 0.00088
Lower leaflet (nm2): 0.76408 ± 0.00088
Average Z coordinate
Peptide (nm): 6.554 ± 0.040
First Residue (nm): 6.782 ± 0.047
Last Residue (nm): 6.312 ± 0.040
Membrane (nm): 4.532 ± 0.062
Upper leaflet Head Group (nm): 6.524 ± 0.060
Lower leaflet Head Group (nm): 2.533 ± 0.062
Bilayer Thickness (nm): 3.991 ± 0.086
Peptide insertion (nm): 0.030 ± 0.072
Contacts
Peptide - Water: 79.69 ± 0.64
Peptide - Head groups: 17.60 ± 0.24
Peptide - Tail groups: 15.26 ± 0.28
Tilt (°): 95.47 ± 0.54
Membrane (nm2): 0.76408 ± 0.00088
Upper leaflet (nm2): 0.76408 ± 0.00088
Lower leaflet (nm2): 0.76408 ± 0.00088
Average Z coordinate
Peptide (nm): 6.554 ± 0.040
First Residue (nm): 6.782 ± 0.047
Last Residue (nm): 6.312 ± 0.040
Membrane (nm): 4.532 ± 0.062
Upper leaflet Head Group (nm): 6.524 ± 0.060
Lower leaflet Head Group (nm): 2.533 ± 0.062
Bilayer Thickness (nm): 3.991 ± 0.086
Peptide insertion (nm): 0.030 ± 0.072
Contacts
Peptide - Water: 79.69 ± 0.64
Peptide - Head groups: 17.60 ± 0.24
Peptide - Tail groups: 15.26 ± 0.28
Tilt (°): 95.47 ± 0.54
PepDF:
5(ns): CVS
Displacement (nm): 0.374 ± 0.019
Precession(°): 0.32 ± 0.94
50(ns) CVS
Displacement (nm): 1.09 ± 0.17
Precession(°): 3.4 ± 6.0
100(ns) CVS
Displacement(nm): 1.46 ± 0.28
Precession(°): 8.0 ± 11.0
200(ns) CVS
Displacement(nm): 1.6 ± 0.3
Precession(°): 18.0 ± 19.0
Download JSON File.
5(ns): CVS
Displacement (nm): 0.374 ± 0.019
Precession(°): 0.32 ± 0.94
50(ns) CVS
Displacement (nm): 1.09 ± 0.17
Precession(°): 3.4 ± 6.0
100(ns) CVS
Displacement(nm): 1.46 ± 0.28
Precession(°): 8.0 ± 11.0
200(ns) CVS
Displacement(nm): 1.6 ± 0.3
Precession(°): 18.0 ± 19.0
Download JSON File.
Peptide Analyses
Peptide Displacement Fingerprint
(PepDF)
Lateral displacement vs
Rotational
Displacement along the trajectory, for different time
windows .



















