Literature DB >> 25609619

Distribution and function of HCN channels in the apical dendritic tuft of neocortical pyramidal neurons.

Mark T Harnett1, Jeffrey C Magee1, Stephen R Williams2.   

Abstract

The apical tuft is the most remote area of the dendritic tree of neocortical pyramidal neurons. Despite its distal location, the apical dendritic tuft of layer 5 pyramidal neurons receives substantial excitatory synaptic drive and actively processes corticocortical input during behavior. The properties of the voltage-activated ion channels that regulate synaptic integration in tuft dendrites have, however, not been thoroughly investigated. Here, we use electrophysiological and optical approaches to examine the subcellular distribution and function of hyperpolarization-activated cyclic nucleotide-gated nonselective cation (HCN) channels in rat layer 5B pyramidal neurons. Outside-out patch recordings demonstrated that the amplitude and properties of ensemble HCN channel activity were uniform in patches excised from distal apical dendritic trunk and tuft sites. Simultaneous apical dendritic tuft and trunk whole-cell current-clamp recordings revealed that the pharmacological blockade of HCN channels decreased voltage compartmentalization and enhanced the generation and spread of apical dendritic tuft and trunk regenerative activity. Furthermore, multisite two-photon glutamate uncaging demonstrated that HCN channels control the amplitude and duration of synaptically evoked regenerative activity in the distal apical dendritic tuft. In contrast, at proximal apical dendritic trunk and somatic recording sites, the blockade of HCN channels decreased excitability. Dynamic-clamp experiments revealed that these compartment-specific actions of HCN channels were heavily influenced by the local and distributed impact of the high density of HCN channels in the distal apical dendritic arbor. The properties and subcellular distribution pattern of HCN channels are therefore tuned to regulate the interaction between integration compartments in layer 5B pyramidal neurons.
Copyright © 2015 the authors 0270-6474/15/351024-14$15.00/0.

Entities:  

Keywords:  HCN channel; axon; dendrite; neocortex; synaptic integration

Mesh:

Substances:

Year:  2015        PMID: 25609619      PMCID: PMC4300316          DOI: 10.1523/JNEUROSCI.2813-14.2015

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  56 in total

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Authors:  J C Magee
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Authors:  Matthew F Nolan; Gaël Malleret; Josh T Dudman; Derek L Buhl; Bina Santoro; Emma Gibbs; Svetlana Vronskaya; György Buzsáki; Steven A Siegelbaum; Eric R Kandel; Alexei Morozov
Journal:  Cell       Date:  2004-11-24       Impact factor: 41.582

4.  Encoding and decoding of dendritic excitation during active states in pyramidal neurons.

Authors:  Stephen R Williams
Journal:  J Neurosci       Date:  2005-06-22       Impact factor: 6.167

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Authors:  J C Magee
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  60 in total

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5.  Correlation Transfer by Layer 5 Cortical Neurons Under Recreated Synaptic Inputs In Vitro.

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10.  Fragile X Mental Retardation Protein Bidirectionally Controls Dendritic Ih in a Cell Type-Specific Manner between Mouse Hippocampus and Prefrontal Cortex.

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