Literature DB >> 11640931

Effect of transgenic overexpression of NR2B on NMDA receptor function and synaptic plasticity in visual cortex.

B D Philpot1, M P Weisberg, M S Ramos, N B Sawtell, Y P Tang, J Z Tsien, M F Bear.   

Abstract

The NMDA receptor (NMDAR) is a heteromer comprised of NR1 and NR2 subunits. Mice that overexpress the NR2B subunit exhibit enhanced hippocampal LTP, prolonged NMDAR currents, and improved memory ( Tang et al., 1999). In the current study, we explored visual cortex plasticity and NMDAR function in NR2B overexpressing transgenic mice. Unlike the hippocampus, in vitro synaptic plasticity of the visual cortex was unaltered by NR2B overexpression. Consistent with the plasticity findings, NMDAR excitatory postsynaptic current (EPSC) durations from layer 2/3 pyramidal cells were similar in wild-type (wt) and transgenic (tg) mice. Furthermore, temporal summation of NMDAR EPSCs to 10, 20, and 40 Hz stimulation did not differ between cells from wt and tg mice. Finally, although in situ studies clearly demonstrate overexpression of NR2B mRNA in visual cortex, we failed to observe a significant elevation in the synaptic expression of NR2B protein. We conclude that the synaptic ratio of NR2B over NR2A in the NMDA receptor complex in the visual cortex is not significantly influenced by the transgene overexpression. These data suggest that mRNA availability is not a limiting factor for the synthesis of NR2B protein in the visual cortex, and support the hypothesis that levels of NR2A, rather than NR2B, normally determine the subunit composition of NMDARs in visual cortex.

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Year:  2001        PMID: 11640931     DOI: 10.1016/s0028-3908(01)00136-8

Source DB:  PubMed          Journal:  Neuropharmacology        ISSN: 0028-3908            Impact factor:   5.250


  23 in total

1.  Decline of the critical period of visual plasticity is concurrent with the reduction of NR2B subunit of the synaptic NMDA receptor in layer 4.

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2.  Virally mediated knock-down of NR2 subunits ipsilateral to the deprived eye blocks ocular dominance plasticity.

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3.  Obligatory role of NR2A for metaplasticity in visual cortex.

Authors:  Benjamin D Philpot; Kathleen K A Cho; Mark F Bear
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4.  Mechanisms of Functional Hypoconnectivity in the Medial Prefrontal Cortex of Mecp2 Null Mice.

Authors:  Michael P Sceniak; Min Lang; Addison C Enomoto; C James Howell; Douglas J Hermes; David M Katz
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5.  Region-specific restoration of striatal synaptic plasticity by dopamine grafts in experimental parkinsonism.

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6.  PAH particles perturb prenatal processes and phenotypes: protection from deficits in object discrimination afforded by dampening of brain oxidoreductase following in utero exposure to inhaled benzo(a)pyrene.

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Review 7.  Contribution of NMDA receptors to dorsolateral prefrontal cortical networks in primates.

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8.  Common Pathophysiology in Multiple Mouse Models of Pitt-Hopkins Syndrome.

Authors:  Courtney Thaxton; Alexander D Kloth; Ellen P Clark; Sheryl S Moy; Raymond A Chitwood; Benjamin D Philpot
Journal:  J Neurosci       Date:  2017-12-08       Impact factor: 6.167

9.  Developmental regulation of the NMDA receptor subunits, NR3A and NR1, in human prefrontal cortex.

Authors:  Maile A Henson; Adam C Roberts; Kayvon Salimi; Swarooparani Vadlamudi; Robert M Hamer; John H Gilmore; L Fredrik Jarskog; Benjamin D Philpot
Journal:  Cereb Cortex       Date:  2008-02-21       Impact factor: 5.357

10.  Lesion-induced enhancement of LTP in rat visual cortex is mediated by NMDA receptors containing the NR2B subunit.

Authors:  Markus Huemmeke; Ulf T Eysel; Thomas Mittmann
Journal:  J Physiol       Date:  2004-07-29       Impact factor: 5.182

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