Endothelial nitric oxide synthase regulates N-Ras activation on the Golgi complex of antigen-stimulated T cells


Por: Ibiza, S, Perez-Rodriguez, A, Ortega, A, Martinez-Ruiz, A, Barreiro, O, Garcia-Dominguez, C, Victor, V, Esplugues, J, Rojas, J, Sanchez-Madrid, F and Serrador, J

Publicada: 29 jul 2008
Resumen:
Ras/ERK signaling plays an important role in T cell activation and development. We recently reported that endothelial nitric oxide synthase (eNOS)-derived NO regulates T cell receptor (TCR)-dependent ERK activation by a cGMP-independent mechanism. Here, we explore the mechanisms through which eNOS exerts this regulation. We have found that eNOS-derived NO positively regulates Ras/ERK activation in T cells stimulated with antigen on antigen-presenting cells (APCs). Intracellular activation of N-, H-, and K-Ras was monitored with fluorescent probes in T cells stably transfected with eNOS-GFP or its G2A point mutant, which is defective in activity and cellular localization. Using this system, we demonstrate that eNOS selectively activates N-Ras but not K-Ras on the Golgi complex of T cells engaged with APC, even though Ras isoforms are activated in response to NO from donors. We further show that activation of N-Ras involves eNOS-dependent S-nitrosylation on Cys(118), suggesting that upon TCR engagement, eNOS-derived NO directly activates N-Ras on the Golgi. Moreover, wild-type but not Cys(118), N-Ras increased TCR-dependent apoptosis, suggesting that S-nitrosylation of Cys(118) contributes to activation-induced T cell death. Our data define a signaling mechanism for the regulation of the Ras/ERK pathway based on the eNOS-dependent differential activation of N-Ras and K-Ras at specific cell compartments.
ISSN: 10916490





PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Editorial
National Academy of Sciences, 2101 CONSTITUTION AVE NW, WASHINGTON, DC 20418 USA, Estados Unidos America
Tipo de documento: Article
Volumen: 105 Número: 30
Páginas: 10507-10512
WOS Id: 000258211600043
ID de PubMed: 18641128
imagen Green Published

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