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Protein crowding and lipid complexity influence the nanoscale dynamic organization of ion channels in cell membranes.

Anna L DuncanTyler ReddyHeidi KoldsøJean HéliePhilip W FowlerMatthieu ChaventMark S P Sansom
Published in: Scientific reports (2017)
Cell membranes are crowded and complex environments. To investigate the effect of protein-lipid interactions on dynamic organization in mammalian cell membranes, we have performed coarse-grained molecular dynamics simulations containing >100 copies of an inwardly rectifying potassium (Kir) channel which forms specific interactions with the regulatory lipid phosphatidylinositol 4,5-bisphosphate (PIP2). The tendency of protein molecules to cluster has the effect of organizing the membrane into dynamic compartments. At the same time, the diversity of lipids present has a marked effect on the clustering behavior of ion channels. Sub-diffusion of proteins and lipids is observed. Protein crowding alters the sub-diffusive behavior of proteins and lipids such as PIP2 which interact tightly with Kir channels. Protein crowding also affects bilayer properties, such as membrane undulations and bending rigidity, in a PIP2-dependent manner. This interplay between the diffusion and the dynamic organization of Kir channels may have important implications for channel function.
Keyphrases
  • molecular dynamics simulations
  • single cell
  • protein protein
  • fatty acid
  • binding protein
  • amino acid
  • cell therapy
  • small molecule
  • mass spectrometry
  • transcription factor
  • high resolution
  • high speed