Literature DB >> 22063717

Brain pattern of histone H3 phosphorylation after acute amphetamine administration: its relationship to brain c-fos induction is strongly dependent on the particular brain area.

David Rotllant1, Antonio Armario.   

Abstract

Recent evidence strongly suggests a critical role of chromatin remodelling in the acute and chronic effects of addictive drugs. We reasoned that Immunohistochemical detection of certain histone modifications may be a more specific tool than induction of immediate early genes (i.e. c-fos) to detect brain areas and neurons that are critical for the action of addictive drugs. Thus, in the present work we studied in adult male rats the effects of a high dose of amphetamine on brain pattern of histone H3 phosphorylation in serine 10 (pH3S(10)) and c-fos expression. We firstly observed that amphetamine-induced an increase in the number of pH3S(10) positive neurons in a restricted number of brain areas, with maximum levels at 30 min after the drug administration that declined at 90 min in most areas. In a second experiment we studied colocalization of pH3S(10) immunoreactivity (pH3S(10)-IR) and c-fos expression. Amphetamine increased c-fos expression in medial prefrontal cortex (mPFC), dorsal striatum, nucleus accumbens (Acb), major Island of Calleja (ICjM), central amygdala (CeA), bed nucleus of stria terminalis lateral dorsal (BSTld) and paraventricular nucleus of the hypothalamus (PVN). Whereas no evidence for increase in pH3S(10) positive neurons was found in the mPFC and the PVN, in the striatum and the Acb basically all pH3S(10) positive neurons showed colocalization with c-fos. In ICjM, CeA and BSTld a notable degree of colocalization was found, but an important number of neurons expressing c-fos were negative for pH3S(10). The present results give support to the hypothesis that amphetamine-induced pH3S(10)-IR showed a more restricted pattern than brain c-fos induction, being this difference strongly dependent on the particular brain area studied. It is likely that those nuclei and neurons showing pH3S(10)-IR are more specifically associated to important effects of the drug, including neural plasticity. This article is part of a Special Issue entitled 'Post-Traumatic Stress Disorder'.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 22063717     DOI: 10.1016/j.neuropharm.2011.10.019

Source DB:  PubMed          Journal:  Neuropharmacology        ISSN: 0028-3908            Impact factor:   5.250


  6 in total

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2.  The Epigenetic Mechanisms of Amphetamine.

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Review 3.  Epigenetics and psychostimulant addiction.

Authors:  Heath D Schmidt; Jacqueline F McGinty; Anne E West; Ghazaleh Sadri-Vakili
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4.  Increased histone H3 phosphorylation in neurons in specific brain structures after induction of status epilepticus in mice.

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Journal:  PLoS One       Date:  2013-10-16       Impact factor: 3.240

5.  The mitogen and stress-activated protein kinase 1 regulates the rapid epigenetic tagging of dorsal horn neurons and nocifensive behaviour.

Authors:  Keri K Tochiki; Maria Maiarú; Caspar Norris; Stephen P Hunt; Sandrine M Géranton
Journal:  Pain       Date:  2016-11       Impact factor: 7.926

6.  Reacquisition of cocaine conditioned place preference and its inhibition by previous social interaction preferentially affect D1-medium spiny neurons in the accumbens corridor.

Authors:  Janine M Prast; Aurelia Schardl; Christoph Schwarzer; Georg Dechant; Alois Saria; Gerald Zernig
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  6 in total

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