Literature DB >> 22826130

Control of neuronal excitability by NMDA-type glutamate receptors in early developing binaural auditory neurons.

Jason Tait Sanchez1, Armin H Seidl, Edwin W Rubel, Andres Barria.   

Abstract

Precise control of neuronal excitability in the auditory brainstem is fundamental for processing timing cues used for sound localization and signal discrimination in complex acoustic environments. In mature nucleus laminaris (NL), the first nucleus responsible for binaural processing in chickens, neuronal excitability is governed primarily by voltage-activated potassium conductances (K(VA)). High levels of K(VA) expression in NL neurons result in one or two initial action potentials (APs) in response to high-frequency synaptic activity or sustained depolarization. Here we show that during a period of synaptogenesis and circuit refinement, before hearing onset, K(VA) conductances are relatively small, in particular low-voltage-activated K(+) conductances (K(LVA)). In spite of this, neuronal output is filtered and repetitive synaptic activity generates only one or two initial APs during a train of stimuli. During this early developmental time period, synaptic NMDA-type glutamate receptors (NMDA-Rs) contain primarily the GluN2B subunit. We show that the slow decay kinetics of GluN2B-containing NMDA-Rs allows synaptic responses to summate, filtering the output of NL neurons before intrinsic properties are fully developed. Weaker Mg(2+) blockade of NMDA-Rs and ambient glutamate early in development generate a tonic NMDA-R-mediated current that sets the membrane potential at more depolarized values. Small KLVA conductances, localized in dendrites, prevent excessive depolarization caused by tonic activation of NMDA-Rs. Thus, before intrinsic properties are fully developed, NMDA-Rs control the output of NL neurons during evoked synaptic transmission.

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Year:  2012        PMID: 22826130      PMCID: PMC3487038          DOI: 10.1113/jphysiol.2012.228734

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  64 in total

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  11 in total

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Authors:  Armin H Seidl; Edwin W Rubel; Andrés Barría
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Authors:  Martijn C Sierksma; Milly S Tedja; J Gerard G Borst
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4.  Frequency-dependent facilitation of synaptic throughput via postsynaptic NMDA receptors in the nucleus of the solitary tract.

Authors:  Huan Zhao; James H Peters; Mingyan Zhu; Stephen J Page; Robert C Ritter; Suzanne M Appleyard
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Authors:  Hayley A Mattison; Takashi Hayashi; Andres Barria
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6.  Ion channel mechanisms underlying frequency-firing patterns of the avian nucleus magnocellularis: A computational model.

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7.  Distinct Neural Properties in the Low-Frequency Region of the Chicken Cochlear Nucleus Magnocellularis.

Authors:  Xiaoyu Wang; Hui Hong; David H Brown; Jason Tait Sanchez; Yuan Wang
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8.  Effects of Neurotrophin-3 on Intrinsic Neuronal Properties at a Central Auditory Structure.

Authors:  Momoko Takahashi; Jason Tait Sanchez
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9.  Factors Influencing Short-term Synaptic Plasticity in the Avian Cochlear Nucleus Magnocellularis.

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10.  Developmental Profile of Ion Channel Specializations in the Avian Nucleus Magnocellularis.

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