Artículo
Modulation of Dendritic Cell Apoptosis and CD8 + Cytotoxicity by Histamine: Role of Protein Kinase C
Alcain, Julieta María
; Podaza, Enrique Arturo
; Gori, María Soledad
; Salamone, Gabriela Veronica
; Vermeulen, Elba Monica
Fecha de publicación:
07/2017
Editorial:
Hindawi Publishing Corporation
Revista:
Mediators of Inflammation
ISSN:
0962-9351
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Dendritic cells (DC) are able to present extracellular antigens associated with the molecules of the major histocompatibility complex class I. In a previous work, we demonstrated that the histamine (HIS), acting through H1/H4 receptors, increases the cross-presentation of soluble ovalbumin by murine DC and can to enhance the recruitment of specific CD8+ T lymphocytes during the development of chronic inflammatory responses. Here, we studied in more depth the mechanisms underlying this enhancement. We showed that the cytotoxicity of specific CD8+ lymphocytes is increased in HIS-treated DC and it is lost by inhibition of vacuolar-ATPase that prevents endosome acidification. It is known that HIS acts through G-protein coupled receptors. The H1/H4 receptors are associated with a Gq subunit, which involves PKC signaling, a pathway related to the apoptotic process. Interestingly, we demonstrated for the first time that HIS prevents DC apoptosis induced by heat-shock through the inhibition of caspase-3, a mechanismdependent on PKC activation, since it is reversed by its inhibition. By contrast, cytolytic activity of T lymphocytes induced by HIS-stimulated DC was independent of PKC pathway.
Palabras clave:
Dendritic Cells
,
Histamine
,
Protein Kinase C
,
Cytotoxic T Lymphocytes
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Articulos(IMEX)
Articulos de INST.DE MEDICINA EXPERIMENTAL
Articulos de INST.DE MEDICINA EXPERIMENTAL
Citación
Alcain, Julieta María; Podaza, Enrique Arturo; Gori, María Soledad; Salamone, Gabriela Veronica; Vermeulen, Elba Monica; Modulation of Dendritic Cell Apoptosis and CD8 + Cytotoxicity by Histamine: Role of Protein Kinase C; Hindawi Publishing Corporation; Mediators of Inflammation; 2017; 7-2017; 1-12
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