Literature DB >> 12435806

Mechanism of extracellular signal-regulated kinase activation by the CB(1) cannabinoid receptor.

Ismael Galve-Roperh1, Daniel Rueda, Teresa Gómez del Pulgar, Guillermo Velasco, Manuel Guzmán.   

Abstract

Cannabinoids, the active components of marijuana and their endogenous counterparts, exert many of their actions in brain through the seven-transmembrane receptor CB(1). This receptor is coupled to the activation of the extracellular signal-regulated kinase (ERK) cascade. However, the precise molecular mechanism for CB(1)-mediated ERK activation is still unknown. Here, we show that in U373 MG human astrocytoma cells, CB(1) receptor activation with the cannabinoid agonist delta(8)-tetrahydrocannabinol dimethyl heptyl (HU-210) was coupled to ERK activation and protection from ceramide-induced apoptosis. HU-210-induced ERK activation was inhibited by tyrphostin AG1478 and PP2, widely employed inhibitors of the epidermal growth factor receptor (EGF(R)) and the Src family of cytosolic tyrosine kinases, respectively. However, HU-210 stimulation resulted in neither EGF(R) phosphorylation, Src tyrosine phosphorylation, nor increased Src activity. In addition, dominant-negative forms of both proteins were unable to prevent cannabinoid-induced ERK activation, thus excluding the existence of CB(1)-mediated EGF(R) transactivation or Src activation. Wortmannin and 2-(4-morpholinyl)-8-phenyl-4H-1-benzopyran-4-one (LY294,002), inhibitors of the phosphatidylinositol 3-kinase (PI3K) signaling pathway, blocked cannabinoid-induced ERK activation. Likewise, HU-210 stimulated the PI3K downstream targets protein kinase B (PKB), as shown by its phosphorylation in Thr 308 and Ser 473 residues, and Raf-1. Moreover, betagamma subunit release mimicked ERK and PI3K/PKB activation, suggesting that activation of class IB PI3K mediates cannabinoid action. Pro-survival HU-210 action also required activation of both PI3K and ERK signaling pathways. In conclusion, CB(1)-induced ERK activation was mediated by PI3K(IB) and this effect may have important consequences in the control of cell death/survival decision.

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Year:  2002        PMID: 12435806     DOI: 10.1124/mol.62.6.1385

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  51 in total

1.  Endocannabinoids prevent β-amyloid-mediated lysosomal destabilization in cultured neurons.

Authors:  Janis Noonan; Riffat Tanveer; Allan Klompas; Aoife Gowran; Joanne McKiernan; Veronica A Campbell
Journal:  J Biol Chem       Date:  2010-10-05       Impact factor: 5.157

2.  Cannabinoid CB1 receptors transactivate multiple receptor tyrosine kinases and regulate serine/threonine kinases to activate ERK in neuronal cells.

Authors:  George D Dalton; Allyn C Howlett
Journal:  Br J Pharmacol       Date:  2012-04       Impact factor: 8.739

Review 3.  Cannabinoid CB1 receptor-interacting proteins: novel targets for central nervous system drug discovery?

Authors:  Tricia H Smith; Laura J Sim-Selley; Dana E Selley
Journal:  Br J Pharmacol       Date:  2010-06       Impact factor: 8.739

4.  Equipotent inhibition of fatty acid amide hydrolase and monoacylglycerol lipase - dual targets of the endocannabinoid system to protect against seizure pathology.

Authors:  Vinogran Naidoo; David A Karanian; Subramanian K Vadivel; Johnathan R Locklear; JodiAnne T Wood; Mahmoud Nasr; Pamela Marie P Quizon; Emily E Graves; Vidyanand Shukla; Alexandros Makriyannis; Ben A Bahr
Journal:  Neurotherapeutics       Date:  2012-10       Impact factor: 7.620

5.  Differential modulation of brainstem phosphatidylinositol 3-kinase/Akt and extracellular signal-regulated kinase 1/2 signaling underlies WIN55,212-2 centrally mediated pressor response in conscious rats.

Authors:  Badr Mostafa Ibrahim; Abdel A Abdel-Rahman
Journal:  J Pharmacol Exp Ther       Date:  2011-09-26       Impact factor: 4.030

6.  Inhibitor of Endocannabinoid Deactivation Protects Against In Vitro and In Vivo Neurotoxic Effects of Paraoxon.

Authors:  Karen L G Farizatto; Sara A McEwan; Vinogran Naidoo; Spyros P Nikas; Vidyanand G Shukla; Michael F Almeida; Aaron Byrd; Heather Romine; David A Karanian; Alexandros Makriyannis; Ben A Bahr
Journal:  J Mol Neurosci       Date:  2017-08-12       Impact factor: 3.444

Review 7.  Signal transduction via cannabinoid receptors.

Authors:  George D Dalton; Caroline E Bass; C G Van Horn; Allyn C Howlett
Journal:  CNS Neurol Disord Drug Targets       Date:  2009-12       Impact factor: 4.388

Review 8.  An overview on the biochemistry of the cannabinoid system.

Authors:  María Gómez-Ruiz; Mariluz Hernández; Rosario de Miguel; Jose A Ramos
Journal:  Mol Neurobiol       Date:  2007-06-30       Impact factor: 5.590

9.  Cannabinoid CB1 receptor-dependent long-term depression in autaptic excitatory neurons.

Authors:  Ryan Kellogg; Ken Mackie; Alex Straiker
Journal:  J Neurophysiol       Date:  2009-06-03       Impact factor: 2.714

10.  The expression level of CB1 and CB2 receptors determines their efficacy at inducing apoptosis in astrocytomas.

Authors:  Eiron Cudaback; William Marrs; Thomas Moeller; Nephi Stella
Journal:  PLoS One       Date:  2010-01-14       Impact factor: 3.240

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