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      Lipid rafts in the maintenance of synapses, dendritic spines, and surface AMPA receptor stability.

      The Journal of neuroscience : the official journal of the Society for Neuroscience
      Animals, Brain Chemistry, Carrier Proteins, analysis, metabolism, Cell Membrane, chemistry, Cells, Cultured, Cholesterol, Dendrites, ultrastructure, Detergents, Enzyme Inhibitors, pharmacology, Filipin, Fumonisins, Lovastatin, analogs & derivatives, Membrane Microdomains, drug effects, Nerve Tissue Proteins, Neurons, cytology, Rats, Receptors, AMPA, Receptors, N-Methyl-D-Aspartate, Sphingolipids, Subcellular Fractions, Synapses

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          Abstract

          Cholesterol/sphingolipid microdomains (lipid rafts) in the membrane are involved in protein trafficking, formation of signaling complexes, and regulation of actin cytoskeleton. Here, we show that lipid rafts exist abundantly in dendrites of cultured hippocampal neurons, in which they are associated with several postsynaptic proteins including surface AMPA receptors. Depletion of cholesterol/sphingolipid leads to instability of surface AMPA receptors and gradual loss of synapses (both inhibitory and excitatory) and dendritic spines. The remaining synapses and spines in raft-depleted neurons become greatly enlarged. The importance of lipid rafts for normal synapse density and morphology could explain why cholesterol promotes synapse maturation in retinal ganglion cells (Mauch et al., 2001) and offers a potential link between disordered cholesterol metabolism and the synapse loss seen in neurodegenerative disease.

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