The roles of Eph receptors in contextual fear conditioning memory formation

Neurobiol Learn Mem. 2015 Oct:124:62-70. doi: 10.1016/j.nlm.2015.07.003. Epub 2015 Jul 9.

Abstract

Eph receptors regulate glutamate receptors functions, neuronal morphology and synaptic plasticity, cellular events believed to be involved in memory formation. In this study we aim to explore the roles of Eph receptors in learning and memory. Toward that end, we examined the roles of EphB2 and EphA4 receptors, key regulators of synaptic functions, in fear conditioning memory formation. We show that mice lacking EphB2 (EphB2(-/-)) are impaired in short- and long-term contextual fear conditioning memory. Mice that express a carboxy-terminally truncated form of EphB2 that lacks forward signaling, instead of the full EphB2, are impaired in long-term, but not short-term, contextual fear conditioning memory. Long-term contextual fear conditioning memory is attenuated in CaMKII-cre;EphA4(lx/-) mice where EphA4 is removed from all pyramidal neurons of the forebrain. Mutant mice with targeted kinase-dead EphA4 (EphA4(KD)) exhibit intact long-term contextual fear conditioning memory showing that EphA4 kinase-mediated forward signaling is not needed for contextual fear memory formation. The ability to form long-term conditioned taste aversion (CTA) memory is not impaired in the EphB2(-/-) and CaMKII-cre;EphA4(lx/-) mice. We conclude that EphB2 forward signaling is required for long-term contextual fear conditioning memory formation. In contrast, EphB2 mediates short-term contextual fear conditioning memory formation in a forward signaling-independent manner. EphA4 mediates long-term contextual fear conditioning memory formation in a kinase-independent manner.

Keywords: EphA4; EphB2; Fear conditioning; Learning and memory.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Conditioning, Classical / physiology*
  • Fear / physiology*
  • Memory, Long-Term / physiology*
  • Mice
  • Mice, Knockout
  • Prosencephalon / physiology*
  • Receptor, EphA4 / genetics
  • Receptor, EphA4 / physiology*
  • Receptor, EphB2 / genetics
  • Receptor, EphB2 / physiology*
  • Signal Transduction

Substances

  • Ephb2 protein, mouse
  • Receptor, EphA4
  • Receptor, EphB2