PackMem: A Versatile Tool to Compute and Visualize Interfacial Packing Defects in Lipid Bilayers

scientific article published on 05 July 2018

PackMem: A Versatile Tool to Compute and Visualize Interfacial Packing Defects in Lipid Bilayers is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.BPJ.2018.06.025
P932PMC publication ID6084522
P698PubMed publication ID30055754

P50authorStefano VanniQ42403017
Romain GautierQ61014818
P2093author name stringBruno Antonny
Amélie Bacle
Marion L Tiberti
Patrick F Fuchs
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Interdigitation between Triglycerides and Lipids Modulates Surface Properties of Lipid DropletsQ38840401
Critical Comparison of Biomembrane Force Fields: Protein-Lipid Interactions at the Membrane InterfaceQ38847982
A sub-nanometre view of how membrane curvature and composition modulate lipid packing and protein recruitmentQ38956466
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Molecular Dynamics Simulations of Phosphatidylcholine Membranes: A Comparative Force Field StudyQ39522644
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Friction Mediates Scission of Tubular Membranes Scaffolded by BAR Proteins.Q42351671
A filter at the entrance of the Golgi that selects vesicles according to size and bulk lipid compositionQ42402971
P433issue3
P304page(s)436-444
P577publication date2018-07-05
P1433published inBiophysical JournalQ2032955
P1476titlePackMem: A Versatile Tool to Compute and Visualize Interfacial Packing Defects in Lipid Bilayers
P478volume115

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cites work (P2860)
Q90592825GROmaρs: A GROMACS-Based Toolset to Analyze Density Maps Derived from Molecular Dynamics Simulations
Q64119220Lipids or Proteins: Who Is Leading the Dance at Membrane Contact Sites?
Q94560946Membrane Thinning Induces Sorting of Lipids and the Amphipathic Lipid Packing Sensor (ALPS) Protein Motif

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