Deletion of selenoprotein P results in impaired function of parvalbumin interneurons and alterations in fear learning and sensorimotor gating

Neuroscience. 2012 Apr 19:208:58-68. doi: 10.1016/j.neuroscience.2012.02.017. Epub 2012 Feb 21.

Abstract

One of the primary lines of defense against oxidative stress is the selenoprotein family, a class of proteins that contain selenium in the form of the 21st amino acid, selenocysteine. Within this class of proteins, selenoprotein P (Sepp1) is unique, as it contains multiple selenocysteine residues and is postulated to act in selenium transport. Recent findings have demonstrated that neuronal selenoprotein synthesis is required for the development of parvalbumin (PV)-interneurons, a class of GABAergic neurons involved in the synchronization of neural activity. To investigate the potential influence of Sepp1 on PV-interneurons, we first mapped the distribution of the Sepp1 receptor, ApoER2, and parvalbumin in the mouse brain. Our results indicate that ApoER2 is highly expressed on PV-interneurons in multiple brain regions. Next, to determine whether PV-interneuron populations are affected by Sepp1 deletion, we performed stereology on several brain regions in which we observed ApoER2 expression on PV-interneurons, comparing wild-type and Sepp1(-/-) mice. We observed reduced numbers of PV-interneurons in the inferior colliculus of Sepp1(-/-) mice, which corresponded with a regional increase in oxidative stress. Finally, as impaired PV-interneuron function has been implicated in several neuropsychiatric conditions, we performed multiple behavioral tests on Sepp1(-/-) mice. Our behavioral results indicate that Sepp1(-/-) mice have impairments in contextual fear extinction, latent inhibition, and sensorimotor gating. In sum, these findings demonstrate the important supporting role of Sepp1 on ApoER2-expressing PV-interneurons.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Fear / physiology*
  • Female
  • Gene Deletion*
  • Interneurons / metabolism
  • Interneurons / pathology*
  • Learning Disabilities / genetics
  • Learning Disabilities / metabolism*
  • Learning Disabilities / pathology
  • Male
  • Mice
  • Mice, Knockout
  • Oxidative Stress / genetics
  • Parvalbumins / antagonists & inhibitors*
  • Parvalbumins / physiology
  • Selenoprotein P / deficiency*
  • Selenoprotein P / genetics
  • Sensory Gating / genetics*

Substances

  • Parvalbumins
  • Selenoprotein P