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P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells

Previously, we reported that purinergic ionotropic P2X7 receptors negatively regulate neurite formation in Neuro-2a (N2a) mouse neuroblastoma cells through a Ca(2+)/calmodulin-dependent kinase II-related mechanism. In the present study we used this cell line to investigate a parallel though faster P...

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Autores principales: Gutiérrez-Martín, Yolanda, Bustillo, Diego, Gómez-Villafuertes, Rosa, Sánchez-Nogueiro, Jesús, Torregrosa-Hetland, Cristina, Binz, Thomas, Gutiérrez, Luis Miguel, Miras-Portugal, María Teresa, Artalejo, Antonio R.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3064193/
https://www.ncbi.nlm.nih.gov/pubmed/21292765
http://dx.doi.org/10.1074/jbc.M110.139410
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author Gutiérrez-Martín, Yolanda
Bustillo, Diego
Gómez-Villafuertes, Rosa
Sánchez-Nogueiro, Jesús
Torregrosa-Hetland, Cristina
Binz, Thomas
Gutiérrez, Luis Miguel
Miras-Portugal, María Teresa
Artalejo, Antonio R.
author_facet Gutiérrez-Martín, Yolanda
Bustillo, Diego
Gómez-Villafuertes, Rosa
Sánchez-Nogueiro, Jesús
Torregrosa-Hetland, Cristina
Binz, Thomas
Gutiérrez, Luis Miguel
Miras-Portugal, María Teresa
Artalejo, Antonio R.
author_sort Gutiérrez-Martín, Yolanda
collection PubMed
description Previously, we reported that purinergic ionotropic P2X7 receptors negatively regulate neurite formation in Neuro-2a (N2a) mouse neuroblastoma cells through a Ca(2+)/calmodulin-dependent kinase II-related mechanism. In the present study we used this cell line to investigate a parallel though faster P2X7 receptor-mediated signaling pathway, namely Ca(2+)-regulated exocytosis. Selective activation of P2X7 receptors evoked exocytosis as assayed by high resolution membrane capacitance measurements. Using dual-wavelength total internal reflection microscopy, we have observed both the increase in near-membrane Ca(2+) concentration and the exocytosis of fluorescently labeled vesicles in response to P2X7 receptor stimulation. Moreover, activation of P2X7 receptors also affects vesicle motion in the vertical and horizontal directions, thus, involving this receptor type in the control of early steps (docking and priming) of the secretory pathway. Immunocytochemical and RT-PCR experiments evidenced that N2a cells express the three neuronal SNAREs as well as vesicular nucleotide and monoamine (VMAT-1 and VMAT-2) transporters. Biochemical measurements indicated that ionomycin induced a significant release of ATP from N2a cells. Finally, P2X7 receptor stimulation and ionomycin increased the incidence of small transient inward currents, reminiscent of postsynaptic quantal events observed at synapses. Small transient inward currents were dependent on extracellular Ca(2+) and were abolished by Brilliant Blue G, suggesting they were mediated by P2X7 receptors. Altogether, these results suggest the existence of a positive feedback mechanism mediated by P2X7 receptor-stimulated exocytotic release of ATP that would act on P2X7 receptors on the same or neighbor cells to further stimulate its own release and negatively control N2a cell differentiation.
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spelling pubmed-30641932011-03-29 P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells Gutiérrez-Martín, Yolanda Bustillo, Diego Gómez-Villafuertes, Rosa Sánchez-Nogueiro, Jesús Torregrosa-Hetland, Cristina Binz, Thomas Gutiérrez, Luis Miguel Miras-Portugal, María Teresa Artalejo, Antonio R. J Biol Chem Neurobiology Previously, we reported that purinergic ionotropic P2X7 receptors negatively regulate neurite formation in Neuro-2a (N2a) mouse neuroblastoma cells through a Ca(2+)/calmodulin-dependent kinase II-related mechanism. In the present study we used this cell line to investigate a parallel though faster P2X7 receptor-mediated signaling pathway, namely Ca(2+)-regulated exocytosis. Selective activation of P2X7 receptors evoked exocytosis as assayed by high resolution membrane capacitance measurements. Using dual-wavelength total internal reflection microscopy, we have observed both the increase in near-membrane Ca(2+) concentration and the exocytosis of fluorescently labeled vesicles in response to P2X7 receptor stimulation. Moreover, activation of P2X7 receptors also affects vesicle motion in the vertical and horizontal directions, thus, involving this receptor type in the control of early steps (docking and priming) of the secretory pathway. Immunocytochemical and RT-PCR experiments evidenced that N2a cells express the three neuronal SNAREs as well as vesicular nucleotide and monoamine (VMAT-1 and VMAT-2) transporters. Biochemical measurements indicated that ionomycin induced a significant release of ATP from N2a cells. Finally, P2X7 receptor stimulation and ionomycin increased the incidence of small transient inward currents, reminiscent of postsynaptic quantal events observed at synapses. Small transient inward currents were dependent on extracellular Ca(2+) and were abolished by Brilliant Blue G, suggesting they were mediated by P2X7 receptors. Altogether, these results suggest the existence of a positive feedback mechanism mediated by P2X7 receptor-stimulated exocytotic release of ATP that would act on P2X7 receptors on the same or neighbor cells to further stimulate its own release and negatively control N2a cell differentiation. American Society for Biochemistry and Molecular Biology 2011-04-01 2011-02-03 /pmc/articles/PMC3064193/ /pubmed/21292765 http://dx.doi.org/10.1074/jbc.M110.139410 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Neurobiology
Gutiérrez-Martín, Yolanda
Bustillo, Diego
Gómez-Villafuertes, Rosa
Sánchez-Nogueiro, Jesús
Torregrosa-Hetland, Cristina
Binz, Thomas
Gutiérrez, Luis Miguel
Miras-Portugal, María Teresa
Artalejo, Antonio R.
P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells
title P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells
title_full P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells
title_fullStr P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells
title_full_unstemmed P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells
title_short P2X7 Receptors Trigger ATP Exocytosis and Modify Secretory Vesicle Dynamics in Neuroblastoma Cells
title_sort p2x7 receptors trigger atp exocytosis and modify secretory vesicle dynamics in neuroblastoma cells
topic Neurobiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3064193/
https://www.ncbi.nlm.nih.gov/pubmed/21292765
http://dx.doi.org/10.1074/jbc.M110.139410
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