Literature DB >> 24872163

Kv4 channels underlie A-currents with highly variable inactivation time courses but homogeneous other gating properties in the nucleus tractus solitarii.

Caroline Strube1, Layal Saliba, Estelle Moubarak, Virginie Penalba, Marie-France Martin-Eauclaire, Fabien Tell, Nadine Clerc.   

Abstract

In the nucleus of the tractus solitarii (NTS), a large proportion of neurones express transient A-type potassium currents (I KA) having deep influence on the fidelity of the synaptic transmission of the visceral primary afferent inputs to second-order neurones. Up to now, the strong impact of I KA within the NTS was considered to result exclusively from its variation in amplitude, and its molecular correlate(s) remained unknown. In order to identify which Kv channels underlie I KA in NTS neurones, the gating properties and the pharmacology of this current were determined using whole cell patch clamp recordings in slices. Complementary information was brought by immunohistochemistry. Strikingly, two neurone subpopulations characterized by fast or slow inactivation time courses (respectively about 50 and 200 ms) were discriminated. Both characteristics matched those of the Kv4 channel subfamily. The other gating properties, also matching the Kv4 channel ones, were homogeneous through the NTS. The activation and inactivation occurred at membrane potentials around the threshold for generating action potentials, and the time course of recovery from inactivation was rapid. Pharmacologically, I KA in NTS neurones was found to be resistant to tetraethylammonium (TEA), sea anemone toxin blood-depressing substance (BDS) and dendrotoxin (DTX), whereas Androctonus mauretanicus mauretanicus toxin 3 (AmmTX3), a scorpion toxin of the α-KTX 15 family that has been shown to block all the members of the Kv4 family, inhibited 80 % of I KA irrespectively of its inactivation time course. Finally, immunohistochemistry data suggested that, among the Kv4 channel subfamily, Kv4.3 is the prevalent subunit expressed in the NTS.

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Year:  2014        PMID: 24872163     DOI: 10.1007/s00424-014-1533-z

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  57 in total

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Authors:  A Vincent; F Tell
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Journal:  PLoS One       Date:  2012-06-04       Impact factor: 3.240

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9.  Ternary Kv4.2 channels recapitulate voltage-dependent inactivation kinetics of A-type K+ channels in cerebellar granule neurons.

Authors:  Yimy Amarillo; Jose A De Santiago-Castillo; Kevin Dougherty; Jonathon Maffie; Elaine Kwon; Manuel Covarrubias; Bernardo Rudy
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Review 10.  Weighing the evidence for a ternary protein complex mediating A-type K+ currents in neurons.

Authors:  Jonathon Maffie; Bernardo Rudy
Journal:  J Physiol       Date:  2008-10-09       Impact factor: 5.182

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  8 in total

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5.  Nutritional status-dependent endocannabinoid signalling regulates the integration of rat visceral information.

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6.  Regulation of Rostral Nucleus of the Solitary Tract Responses to Afferent Input by A-type K+ Current.

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7.  Effects of high-fat diet and gastric bypass on neurons in the caudal solitary nucleus.

Authors:  A J Boxwell; Z Chen; C M Mathes; A C Spector; C W Le Roux; S P Travers; J B Travers
Journal:  Physiol Behav       Date:  2015-07-26

8.  Gain control with A-type potassium current: IA as a switch between divisive and subtractive inhibition.

Authors:  Joshua H Goldwyn; Bradley R Slabe; Joseph B Travers; David Terman
Journal:  PLoS Comput Biol       Date:  2018-07-09       Impact factor: 4.475

  8 in total

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