Literature DB >> 8377938

p42 mitogen-activated protein kinase in brain: prominent localization in neuronal cell bodies and dendrites.

R S Fiore1, V E Bayer, S L Pelech, J Posada, J A Cooper, J M Baraban.   

Abstract

Neurotransmitters and growth factors can trigger activation of a newly described family of mitogen-activated protein kinases. To help define the role of this kinase family in signal transduction in the nervous system, we have conducted immunohistochemical studies to localize p42 mitogen-activated protein kinase in rat brain sections. Light-microscopic studies revealed staining in neuronal cell bodies and dendrites that is particularly prominent in superficial layers of the neocortex, the hippocampal CA3 region and dentate gyrus, as well as cerebellar Purkinje cells. Discrete staining of oligodendrocytes was also apparent in fiber tracts, indicating expression of p42 mitogen-activated protein kinase in both neuronal and glial cell types. Electron-microscopic studies demonstrated that staining in dendrites is closely associated with microtubules. In the cell bodies, prominent staining was associated with the Golgi apparatus. In contrast, immunolabeling of synaptic terminals was not detected. Previous studies have demonstrated that p42 mitogen-activated protein kinase responds to neuronal stimulation. Immunohistochemical studies presented in this paper demonstrate prominent staining for this kinase in neuronal cell bodies and dendrites. Therefore, this kinase is likely to play a key role in postsynaptic signal transduction. As both p42 mitogen-activated protein kinase and microtubule-associated protein 2, an in vitro substrate of p42 mitogen-activated kinase, are associated with dendritic microtubules, this kinase may mediate effects of growth factors or neurotransmitters on the dendritic cytoskeleton.

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Year:  1993        PMID: 8377938     DOI: 10.1016/0306-4522(93)90516-i

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.590


  36 in total

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2.  CR16, a novel proline-rich protein expressed in rat brain neurons, binds to SH3 domains and is a MAP kinase substrate.

Authors:  M C Weiler; J L Smith; J N Masters
Journal:  J Mol Neurosci       Date:  1996       Impact factor: 3.444

3.  Mitogen-activated protein kinase/extracellular signal-regulated kinase 2 regulates cytoskeletal organization and chemotaxis via catalytic and microtubule-specific interactions.

Authors:  A A Reszka; J C Bulinski; E G Krebs; E H Fischer
Journal:  Mol Biol Cell       Date:  1997-07       Impact factor: 4.138

4.  The pool of map kinase associated with microtubules is small but constitutively active.

Authors:  M Morishima-Kawashima; K S Kosik
Journal:  Mol Biol Cell       Date:  1996-06       Impact factor: 4.138

5.  In vivo expression and regulation of Elk-1, a target of the extracellular-regulated kinase signaling pathway, in the adult rat brain.

Authors:  V Sgambato; P Vanhoutte; C Pagès; M Rogard; R Hipskind; M J Besson; J Caboche
Journal:  J Neurosci       Date:  1998-01-01       Impact factor: 6.167

6.  Emergence of activity-dependent, bidirectional control of microtubule-associated protein MAP2 phosphorylation during postnatal development.

Authors:  E M Quinlan; S Halpain
Journal:  J Neurosci       Date:  1996-12-01       Impact factor: 6.167

7.  Activation of extracellular signal-regulated protein kinases is associated with a sensitized locomotor response to D(2) dopamine receptor stimulation in unilateral 6-hydroxydopamine-lesioned rats.

Authors:  G Cai; X Zhen; K Uryu; E Friedman
Journal:  J Neurosci       Date:  2000-03-01       Impact factor: 6.167

8.  MicroRNA124 Regulated Neurite Elongation by Targeting OSBP.

Authors:  Xi Gu; Aili Li; Shuhu Liu; Lifang Lin; Shuang Xu; Peidong Zhang; Shuji Li; Xiaowen Li; Bo Tian; Xinhong Zhu; Xuemin Wang
Journal:  Mol Neurobiol       Date:  2015-11-18       Impact factor: 5.590

9.  Dynamic seizure-related changes in extracellular signal-regulated kinase activation in a mouse model of temporal lobe epilepsy.

Authors:  C R Houser; C S Huang; Z Peng
Journal:  Neuroscience       Date:  2008-07-10       Impact factor: 3.590

10.  Changes in apical dendritic structure correlate with sustained ERK1/2 phosphorylation in medial prefrontal cortex of a rat model of dopamine D1 receptor agonist sensitization.

Authors:  Sophia T Papadeas; Christopher Halloran; Thomas J McCown; George R Breese; Bonita L Blake
Journal:  J Comp Neurol       Date:  2008-11-10       Impact factor: 3.215

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