Back to Search Start Over

Crucial role of nicotinic α5 subunit variants for Ca2+fluxes in ventral midbrain neurons

Authors :
Isabel Bermudez
Miriam Sciaccaluga
Myriam Catalano
Uwe Maskos
Jerry A. Stitzel
Katiuscia Martinello
Sergio Fucile
Claudia Moriconi
Istituto Neurologico Mediterraneo (NEUROMED I.R.C.C.S.)
Università degli Studi di Roma 'La Sapienza' = Sapienza University [Rome] (UNIROMA)-University of Naples Federico II = Università degli studi di Napoli Federico II
Institut Pasteur, Fondation Cenci Bolognetti - Istituto Pasteur Italia, Fondazione Cenci Bolognetti
Réseau International des Instituts Pasteur (RIIP)
Oxford Brookes University
University of Colorado [Boulder]
Neurobiologie intégrative des Systèmes cholinergiques (NISC)
Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut Pasteur [Paris] (IP)-Centre National de la Recherche Scientifique (CNRS)
This study has been supported by the European Research Area Net (ERA-NET) Neuron NicoGene project (to S.F. and U.M.). J.A.S. is supported by U.S. National Institutes of Health (NIH) National Cancer Institute Grant CA089392 and NIH National Institute on Drug Abuse Grant DA015663.
European Project: 680966,ERA-NET NEURON,NICO-GENE(2015)
Università degli Studi di Roma 'La Sapienza' = Sapienza University [Rome]-Università degli studi di Napoli Federico II
Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut Pasteur [Paris]-Centre National de la Recherche Scientifique (CNRS)
Source :
FASEB Journal, FASEB Journal, 2015, 29 (8), pp.3389-98. ⟨10.1096/fj.14-268102⟩, FASEB Journal, Federation of American Society of Experimental Biology, 2015, 29 (8), pp.3389-98. ⟨10.1096/fj.14-268102⟩
Publication Year :
2015
Publisher :
Wiley, 2015.

Abstract

Neuronal nicotinic acetylcholine receptors (nAChRs) containing the α5 subunit modulate nicotine consumption, and the human CHRNA5 rs16969968 polymorphism, causing the replacement of the aspartic acid residue at position 398 with an asparagine (α5DN), has recently been associated with increased use of tobacco and higher incidence of lung cancer. We show that in ventral midbrain neurons, the α5 subunit is essential for heteromeric nAChR-induced intracellular-free Ca2+ concentration elevations and that in α5−/− mice, a class of large-amplitude nicotine-evoked currents is lost. Furthermore, the expression of the α5DN subunit is not able to restore nicotinic responses, indicating a loss of function by this subunit in native neurons. To understand how α5DN impairs heteromeric nAChR functions, we coexpressed α4, α5, or α5DN subunits with a dimeric concatemer (β2α4) in a heterologous system, to obtain nAChRs with fixed stoichiometry. Both α5(β2α4)2 and α5DN(β2α4)2 nAChRs yielded similar levels of functional expression and Ca2+ permeability, measured as fractional Ca2+ currents (8.2 ± 0.7% and 8.0 ± 1.9%, respectively), 2-fold higher than α4(β2α4)2. Our results indicate that the loss of function of nicotinic responses observed in α5DN-expressing ventral midbrain neurons is neither due to an intrinsic inability of this subunit to form functional nAChRs nor to an altered Ca2+ permeability but likely to intracellular modulation.—Sciaccaluga, M., Moriconi, C., Martinello, K., Catalano, M., Bermudez, I., Stitzel, J. A., Maskos, U., Fucile, S. Crucial role of nicotinic α5 subunit variants for Ca2+ fluxes in ventral midbrain neurons.

Details

ISSN :
15306860 and 08926638
Volume :
29
Database :
OpenAIRE
Journal :
The FASEB Journal
Accession number :
edsair.doi.dedup.....689a98747b93c64a33b107cd984ea66c
Full Text :
https://doi.org/10.1096/fj.14-268102