Estradiol rapidly modulates synaptic plasticity of hippocampal neurons: Involvement of kinase networks

Brain Res. 2015 Sep 24:1621:147-61. doi: 10.1016/j.brainres.2014.12.056. Epub 2015 Jan 13.

Abstract

Estradiol (E2) is locally synthesized within the hippocampus in addition to the gonads. Rapid modulation of hippocampal synaptic plasticity by E2 is essential for synaptic regulation. Molecular mechanisms of modulation through synaptic estrogen receptor (ER) and its downstream signaling, however, have been still unknown. We investigated induction of LTP by the presence of E2 upon weak theta burst stimulation (weak-TBS) in CA1 region of adult male hippocampus. Since only weak-TBS did not induce full-LTP, weak-TBS was sub-threshold stimulation. We observed LTP induction by the presence of E2, after incubation of hippocampal slices with 10nM E2 for 30 min, upon weak-TBS. This E2-induced LTP was blocked by ICI, an ER antagonist. This E2-LTP induction was inhibited by blocking Erk MAPK, PKA, PKC, PI3K, NR2B and CaMKII, individually, suggesting that Erk MAPK, PKA, PKC, PI3K and CaMKII may be involved in downstream signaling for activation of NMDA receptors. Interestingly, dihydrotestosterone suppressed the E2-LTP. We also investigated rapid changes of dendritic spines (=postsynapses) in response to E2, using hippocampal slices from adult male rats. We found 1nM E2 increased the density of spines by approximately 1.3-fold within 2h by imaging Lucifer Yellow-injected CA1 pyramidal neurons. The E2-induced spine increase was blocked by ICI. The increase in spines was suppressed by blocking PI3K, Erk MAPK, p38 MAPK, PKA, PKC, LIMK, CaMKII or calcineurin, individually. On the other hand, blocking JNK did not inhibit the E2-induced spine increase. Taken together, these results suggest that E2 rapidly induced LTP and also increased the spine density through kinase networks that are driven by synaptic ER. This article is part of a Special Issue entitled SI: Brain and Memory.

Keywords: Estradiol; Estrogen; Estrogen receptor; Kinase; LTP; Rapid action; Spine; Synaptic plasticity.

MeSH terms

  • Animals
  • CA1 Region, Hippocampal / cytology
  • CA1 Region, Hippocampal / drug effects
  • CA1 Region, Hippocampal / physiology*
  • Cyclic AMP-Dependent Protein Kinases / metabolism
  • Dendritic Spines / drug effects
  • Dendritic Spines / physiology*
  • Electric Stimulation
  • Estradiol / pharmacology
  • Estradiol / physiology*
  • Lim Kinases / metabolism
  • Long-Term Potentiation* / drug effects
  • MAP Kinase Signaling System
  • Male
  • Phosphatidylinositol 3-Kinase / metabolism
  • Protein Kinase C / metabolism
  • Protein Kinases / metabolism*
  • Pyramidal Cells / drug effects
  • Pyramidal Cells / physiology*
  • Rats
  • Rats, Wistar
  • Receptors, N-Methyl-D-Aspartate / metabolism
  • Signal Transduction*

Substances

  • NR2B NMDA receptor
  • Receptors, N-Methyl-D-Aspartate
  • Estradiol
  • Protein Kinases
  • Phosphatidylinositol 3-Kinase
  • Lim Kinases
  • Cyclic AMP-Dependent Protein Kinases
  • Protein Kinase C