Data in Brief (Oct 2017)

Anandamide-ceramide interactions in a membrane environment: Molecular dynamic simulations data

  • Coralie Di Scala,
  • Morgane Mazzarino,
  • Nouara Yahi,
  • Karine Varini,
  • Nicolas Garmy,
  • Jacques Fantini,
  • Henri Chahinian

DOI
https://doi.org/10.1016/j.dib.2017.07.024
Journal volume & issue
Vol. 14, no. C
pp. 163 – 167

Abstract

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Anandamide is a lipid neurotransmitter that interacts with various plasma membrane lipids. The data here consists of molecular dynamics simulations of anandamide, C18-ceramide and cholesterol performed in vacuo and within a hydrated palmitoyl-oleoyl-phosphatidylcholine (POPC)/cholesterol membrane. Several models of anandamide/cholesterol and anandamide/ceramide complexes are presented. The energy of interaction and the nature of the intermolecular forces involved in each of these complexes are detailed. The impact of water molecules hydrating the POPC/cholesterol membrane for the stability of the anandamide/cholesterol and anandamide/ceramide complexes is also analyzed. From a total number of 1920 water molecules stochatiscally merged with the lipid matrix, 48 were eventually redistributed around the polar head groups of the anandamide/ceramide complex, whereas only 15 reached with the anandamide/cholesterol complex. The interpretation of this dataset is presented in the accompanying article “Ceramide binding to anandamide increases its half-life and potentiates its cytotoxicity in human neuroblastoma cells” [1].