Literature DB >> 9744422

NMDA receptor-independent LTP in basal versus apical dendrites of CA1 pyramidal cells in rat hippocampal slice.

I Cavus1, T J Teyler.   

Abstract

The ability of hippocampal CA1 basal synapses to express N-methyl-D-aspartate (NMDA) receptor-independent long-term potentiation (non-NMDA LTP) was studied and compared to the simultaneously induced apical dendritic non-NMDA LTP. Non-NMDA LTP in basal and apical dendrites was induced using stimulation pattern similar to the sharp wave-associated CA3 bursts. Basal dendritic non-NMDA LTP was input-specific and displayed similar development and magnitude to the apical dendritic non-NMDA LTP. Both apical and basal dendritic non-NMDA potentiations were inhibited by the voltage-dependent calcium channel (VDCC) inhibitor verapamil and the tyrosine kinase inhibitors genistein and levandustin A. However, the difference in the degree and time course of these inhibitions suggests involvement of distinct mechanisms in the two dendritic subfields.

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Year:  1998        PMID: 9744422     DOI: 10.1002/(SICI)1098-1063(1998)8:4<373::AID-HIPO5>3.0.CO;2-I

Source DB:  PubMed          Journal:  Hippocampus        ISSN: 1050-9631            Impact factor:   3.899


  10 in total

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2.  Capture of the late phase of long-term potentiation within and across the apical and basilar dendritic compartments of CA1 pyramidal neurons: synaptic tagging is compartment restricted.

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4.  Defective place cell activity in nociceptin receptor knockout mice with elevated NMDA receptor-dependent long-term potentiation.

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Authors:  Raunak Basu; Xin Duan; Matthew R Taylor; E Anne Martin; Shruti Muralidhar; Yueqi Wang; Luke Gangi-Wellman; Sujan C Das; Masahito Yamagata; Peter J West; Joshua R Sanes; Megan E Williams
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7.  Histidine-decarboxylase knockout mice show deficient nonreinforced episodic object memory, improved negatively reinforced water-maze performance, and increased neo- and ventro-striatal dopamine turnover.

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Review 9.  Hippocampal pyramidal cells: the reemergence of cortical lamination.

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10.  Kalirin-7 is necessary for normal NMDA receptor-dependent synaptic plasticity.

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  10 in total

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