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Research article summary (published 28 Sep 2009):

Selective expression of ErbB4 in interneurons, but not pyramidal cells, of the rodent hippocampus.

Full Abstract

NRG1 and ERBB4 have emerged as some of the most reproducible schizophrenia risk genes. Moreover, the Neuregulin (NRG)/ErbB4 signaling pathway has been implicated in dendritic spine morphogenesis, glutamatergic synaptic plasticity, and neural network control. However, despite much attention this pathway and its effects on pyramidal cells have received recently, the presence of ErbB4 in these cells is still controversial. As knowledge of the precise locus of receptor expression is crucial to delineating the mechanisms by which NRG signaling elicits its diverse physiological effects, we have undertaken a thorough analysis of ErbB4 distribution in the CA1 area of the rodent hippocampus using newly generated rabbit monoclonal antibodies and ErbB4-mutant mice as negative controls. We detected ErbB4 immunoreactivity in GABAergic interneurons but not in pyramidal neurons, a finding that was further corroborated by the lack of ErbB4 mRNA in electrophysiologically identified pyramidal neurons as determined by single-cell reverse transcription-PCR. Contrary to some previous reports, we also did not detect processed ErbB4 fragments or nuclear ErbB4 immunoreactivity. Ultrastructural analysis in CA1 interneurons using immunoelectron microscopy revealed abundant ErbB4 expression in the somatodendritic compartment in which it accumulates at, and adjacent to, glutamatergic postsynaptic sites. In contrast, we found no evidence for presynaptic expression in cultured GAD67-positive hippocampal interneurons and in CA1 basket cell terminals. Our findings identify ErbB4-expressing interneurons, but not pyramidal neurons, as a primary target of NRG signaling in the hippocampus and, furthermore, implicate ErbB4 as a selective marker for glutamatergic synapses on inhibitory interneurons.

 

Author information

Author/s: Vullhorst, Detlef (D); Neddens, Jörg (J); Karavanova, Irina (I); Tricoire, Ludovic (L); Petralia, Ronald S (RS); McBain, Chris J (CJ); Buonanno, Andres (A);

Affiliation: Section on Molecular Neurobiology, Eunice Shriver Kennedy National Institute of Child Health and Human Development, National Institute on Deafness and other Communication Disorders, Bethesda, Maryland 20892-3714, USA.

Journal and publication information

Publication Type: Comparative Study; Journal Article; Research Support, N.I.H., Extramural; Research Support, N.I.H., Intramural

Journal: The Journal of neuroscience : the official journal of the Society for Neuroscience (J Neurosci), published in United States. (Language: eng)

Reference: 2009-Sep; vol 29 (issue 39) : pp 12255-64

Dates: Created 2009/10/01; Completed 2009/10/13; Revised 2009/11/10;

PMID: 19793984, status: MEDLINE (last retrieval date: 11/12/2009, IMS Date: )

Sourced from the National Library of Medicine. Abstract text and other information may be subject to copyright.

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MeSH headings (categories)

This article was linked to the MESH Headings shown below.

Associated Chemicals: gamma-Aminobutyric Acid (56-12-2) ; ERBB4 protein (EC 2.7.1.112) ; Receptor, Epidermal Growth Factor (EC 2.7.1.112)

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