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POPC with 40 and 50 mol-% of cholesterol at 310 K. Charmm36 force field.

<p>A POPC bilayer consisting of 200 lipids (100 per leaflet)&nbsp;is simulated in the presence of 40% (134&nbsp;molecules) and&nbsp;50 % (200 molecules)&nbsp;of cholesterol. The Charmm36&nbsp;model [1] is employed for lipids and the Charmm-compatible variant&nbsp;of the tip3p&nbsp;model for water.</p> <p>The Charmm36 force field parameters were obtained from CHARMM-GUI [2] at http://www.charmm-gui.org</p> <p>&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;</p> <p>The files are in GROMACS format. Trajectory (.xtc) is&nbsp;100 ns long with data saved every 100 ps. Additionally, the initial&nbsp;structure (.gro), topology (.top), index file (.ndx), simulation paremeter file (.mdp), binary run input file&nbsp;for GROMACS v. 5.0&ndash;&gt; (.tpr) and the energy output file&nbsp;(.edr) are provided.&nbsp;</p> <p>UPDATE: Longer 500 ns&nbsp;trajectories are updated together with the checkpoint files.</p> <p>&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;&ndash;</p> <p>[1] Update of the CHARMM All-Atom Additive Force Field&nbsp;for Lipids:&nbsp;Validation on Six Lipid Types</p> <p>Jeffery B. Klauda, Richard M. Venable, J. Alfredo Freites, &nbsp;Joseph W. O&rsquo;Connor,&nbsp;Douglas J. Tobias, Carlos Mondragon-Ramirez,&nbsp;Igor Vorobyov, Alexander D.&nbsp;MacKerell, Jr., and Richard W. Pastor</p> <p>The Journal of Physical Chemistry B 2010 114 (23), 7830-7843</p> <p>DOI: 10.1021/jp101759q</p> <p>&nbsp;</p> <p>[2] CHARMM-GUI Input Generator for NAMD, GROMACS, AMBER, OpenMM,&nbsp;and CHARMM/OpenMM Simulations Using the CHARMM36 Additive Force Field</p> <p>Jumin Lee, Xi Cheng, Jason M. Swails, Min Sun Yeom, Peter K. Eastman, Justin A. Lemkul, Shuai Wei, Joshua Buckner, Jong Cheol Jeong, Yifei Qi,&nbsp;Sunhwan Jo, Vijay S. Pande, David A. Case, Charles L. Brooks, III,&nbsp;Alexander D. MacKerell, Jr., Jeffery B. Klauda, and Wonpil Im</p> <p>Journal of Chemical Theory and Computation 2016 12 (1), 405-413</p> <p>DOI: 10.1021/acs.jctc.5b00935</p>

ShareScore

32/100

Overall dataset sharing score

Score breakdown

These five areas show where the dataset supports — or may limit — practical reuse.

Stewardship
4
Harmonization
4
Access
16
Reuse readiness
8
Engagement
0