Literature DB >> 17452494

Serotonin inhibits neuronal excitability by activating two-pore domain k+ channels in the entorhinal cortex.

Pan-Yue Deng1, Shree Kanta S Poudel, Lalida Rojanathammanee, James E Porter, Saobo Lei.   

Abstract

The entorhinal cortex (EC) is regarded as the gateway to the hippocampus; the superficial layers (layers I-III) of the EC convey the cortical input projections to the hippocampus, whereas deep layers of the EC relay hippocampal output projections back to the superficial layers of the EC or to other cortical regions. The superficial layers of the EC receive strong serotonergic projections from the raphe nuclei. However, the function of serotonin in the EC is still elusive. In the present study, we examined the molecular and cellular mechanisms underlying serotonin-mediated inhibition of the neuronal excitability in the superficial layers (layers II and III) of the EC. Application of serotonin inhibited the excitability of stellate and pyramidal neurons in the superficial layers of the EC by activating the TWIK-1 type of the two-pore domain K(+) channels. The effects of 5-HT were mediated via 5-HT(1A) receptors and required the function of Galpha(i3) subunit and protein kinase A. Serotonin-mediated inhibition of EC activity resulted in an inhibition of hippocampal function. Our study provides a cellular mechanism that might at least partially explain the roles of serotonin in many physiological functions and neurological diseases.

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Year:  2007        PMID: 17452494     DOI: 10.1124/mol.107.034389

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


  32 in total

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Journal:  J Physiol       Date:  2017-08-03       Impact factor: 5.182

3.  Serotonin differentially modulates the intrinsic properties of spinal motoneurons from the adult turtle.

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Journal:  J Physiol       Date:  2007-12-20       Impact factor: 5.182

4.  Modulation of GABAergic transmission by muscarinic receptors in the entorhinal cortex of juvenile rats.

Authors:  Zhaoyang Xiao; Pan-Yue Deng; Chuanxiu Yang; Saobo Lei
Journal:  J Neurophysiol       Date:  2009-06-03       Impact factor: 2.714

5.  Potassium channel silencing by constitutive endocytosis and intracellular sequestration.

Authors:  Sylvain Feliciangeli; Magalie P Tardy; Guillaume Sandoz; Franck C Chatelain; Richard Warth; Jacques Barhanin; Saïd Bendahhou; Florian Lesage
Journal:  J Biol Chem       Date:  2009-12-03       Impact factor: 5.157

6.  Serotonin regulates voltage-dependent currents in type I(e(A)) and I(i) interneurons of Hermissenda.

Authors:  Nan Ge Jin; Terry Crow
Journal:  J Neurophysiol       Date:  2011-08-03       Impact factor: 2.714

7.  Neurotensinergic Excitation of Dentate Gyrus Granule Cells via Gαq-Coupled Inhibition of TASK-3 Channels.

Authors:  Haopeng Zhang; Hailong Dong; Nicholas I Cilz; Lalitha Kurada; Binqi Hu; Etsuko Wada; Douglas A Bayliss; James E Porter; Saobo Lei
Journal:  Cereb Cortex       Date:  2014-11-18       Impact factor: 5.357

8.  Activation of group II metabotropic glutamate receptors inhibits glutamatergic transmission in the rat entorhinal cortex via reduction of glutamate release probability.

Authors:  Shouping Wang; Xiaotong Chen; Lalitha Kurada; Zitong Huang; Saobo Lei
Journal:  Cereb Cortex       Date:  2011-06-15       Impact factor: 5.357

9.  Serotonergic modulation of Neural activities in the entorhinal cortex.

Authors:  Saobo Lei
Journal:  Int J Physiol Pathophysiol Pharmacol       Date:  2012-12-26

10.  Modulation of neuronal excitability by serotonin-NMDA interactions in prefrontal cortex.

Authors:  Ping Zhong; Eunice Y Yuen; Zhen Yan
Journal:  Mol Cell Neurosci       Date:  2008-03-25       Impact factor: 4.314

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