Literature DB >> 26247146

Time-Dependent Effects of Ethanol on BK Channel Expression and Trafficking in Hippocampal Neurons.

Stephanie Palacio1,2, Cristina Velázquez-Marrero1, Héctor G Marrero1, Garrett E Seale1, Guillermo A Yudowski1,2, Steven N Treistman1,2.   

Abstract

BACKGROUND: The large conductance Ca(2+) - and voltage-activated K(+) channel (BK) is an important player in molecular and behavioral alcohol tolerance. Trafficking and surface expression of ion channels contribute to the development of addictive behaviors. We have previously reported that internalization of the BK channel is a component of molecular tolerance to ethanol (EtOH).
METHODS: Using primary cultures of hippocampal neurons, we combine total internal reflection fluorescence microscopy, electrophysiology, and biochemical techniques to explore how exposure to EtOH affects the expression and subcellular localization of endogenous BK channels over time.
RESULTS: Exposure to EtOH changed the expression of endogenous BK channels in a time-dependent manner at the perimembrane area (plasma membrane and/or the area adjacent to it), while total protein levels of BK remain unchanged. These results suggest a redistribution of the channel within the neurons rather than changes in synthesis or degradation rates. Our results showed a temporally nonlinear effect of EtOH on perimembrane expression of BK. First, there was an increase in BK perimembrane expression after 10 minutes of EtOH exposure that remained evident after 3 hours, although not correlated to increases in functional channel expression. In contrast, after 6 hours of EtOH exposure, we observed a significant decrease in both BK perimembrane expression and functional channel expression. Furthermore, after 24 hours of EtOH exposure, perimembrane levels of BK had returned to baseline.
CONCLUSIONS: We report a complex time-dependent pattern in the effect of EtOH on BK channel trafficking, including successive increases and decreases in perimembrane expression and a reduction in active BK channels after 3 and 6 hours of EtOH exposure. Possible mechanisms underlying this multiphasic trafficking are discussed. As molecular tolerance necessarily underlies behavioral tolerance, the time-dependent alterations we see at the level of the channel may be relevant to the influence of drinking patterns on the development of behavioral tolerance.
Copyright © 2015 by the Research Society on Alcoholism.

Entities:  

Keywords:  Alcohol; BK Channel; Ethanol; Hippocampus; Tolerance; Trafficking

Mesh:

Substances:

Year:  2015        PMID: 26247146      PMCID: PMC4873156          DOI: 10.1111/acer.12808

Source DB:  PubMed          Journal:  Alcohol Clin Exp Res        ISSN: 0145-6008            Impact factor:   3.455


  44 in total

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3.  Surface traffic of dendritic CaV1.2 calcium channels in hippocampal neurons.

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6.  Improved patch-clamp techniques for high-resolution current recording from cells and cell-free membrane patches.

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7.  A role for the cytoplasmic polyadenylation element in NMDA receptor-regulated mRNA translation in neurons.

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8.  Posttranscriptional regulation of BK channel splice variant stability by miR-9 underlies neuroadaptation to alcohol.

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Review 9.  Regulation of membrane trafficking by signalling on endosomal and lysosomal membranes.

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10.  BK channel subunit composition modulates molecular tolerance to ethanol.

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Authors:  C Contet; S P Goulding; D A Kuljis; A L Barth
Journal:  Int Rev Neurobiol       Date:  2016-05-13       Impact factor: 3.230

Review 3.  Modulation of BK Channels by Ethanol.

Authors:  A M Dopico; A N Bukiya; G Kuntamallappanavar; J Liu
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Review 4.  Alcohol and the Brain: Neuronal Molecular Targets, Synapses, and Circuits.

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5.  ERG-28 controls BK channel trafficking in the ER to regulate synaptic function and alcohol response in C. elegans.

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6.  Chronic glucocorticoid exposure activates BK-NLRP1 signal involving in hippocampal neuron damage.

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7.  Alcohol modulation of BK channel gating depends on β subunit composition.

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  7 in total

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