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1.
Blood ; 120(17): 3478-87, 2012 Oct 25.
Artículo en Inglés | MEDLINE | ID: mdl-22968459

RESUMEN

The interleukin-1 (IL-1) superfamily of cytokines comprises a set of pivotal mediators of inflammation. Among them, the action of IL-36 cytokines in immune responses has remained elusive. In a recent study, we demonstrated a direct effect of IL-36 on immune cells. Here we show that, among T cells, the IL-36 receptor is predominantly expressed on naive CD4(+) T cells and that IL-36 cytokines act directly on naive T cells by enhancing both cell proliferation and IL-2 secretion. IL-36ß acts in synergy with IL-12 to promote Th1 polarization and IL-36 signaling is also involved in mediating Th1 immune responses to Bacillus Calmette-Guerin infection in vivo. Our findings point toward a critical function of IL-36 in the priming of Th1 cell responses in vitro, and in adaptive immunity in a model of mycobacterial infection in vivo.


Asunto(s)
Mycobacterium bovis/inmunología , Receptores de Interleucina-1/inmunología , Transducción de Señal/inmunología , Células TH1/inmunología , Tuberculosis/metabolismo , Tuberculosis/veterinaria , Inmunidad Adaptativa , Animales , Diferenciación Celular , Proliferación Celular , Interleucina-1/inmunología , Interleucina-1/farmacología , Interleucina-12/inmunología , Interleucina-12/farmacología , Interleucina-2/biosíntesis , Interleucina-2/inmunología , Activación de Linfocitos , Ratones , Ratones Noqueados , Cultivo Primario de Células , Receptores de Interleucina-1/deficiencia , Receptores de Interleucina-1/genética , Transducción de Señal/genética , Células TH1/citología , Células TH1/microbiología , Tuberculosis/genética , Tuberculosis/inmunología
2.
Autophagy ; 9(4): 550-67, 2013 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-23380587

RESUMEN

Osmotic homeostasis is fundamental for most cells, which face recurrent alterations of environmental osmolality that challenge cell viability. Protein damage is a consequence of hypertonic stress, but whether autophagy contributes to the osmoprotective response is unknown. Here, we investigated the possible implications of autophagy and microtubule organization on the response to hypertonic stress. We show that hypertonicity rapidly induced long-lived protein degradation, LC3-II generation and Ptdlns3K-dependent formation of LC3- and ATG12-positive puncta. Lysosomotropic agents chloroquine and bafilomycin A 1, but not nutrient deprivation or rapamycin treatment, further increased LC3-II generation, as well as ATG12-positive puncta, indicating that hypertonic stress increases autophagic flux. Autophagy induction upon hypertonic stress enhanced cell survival since cell death was increased by ATG12 siRNA-mediated knockdown and reduced by rapamycin. We additionally showed that hypertonicity induces fast reorganization of microtubule networks, which is associated with strong reorganization of microtubules at centrosomes and fragmentation of Golgi ribbons. Microtubule remodeling was associated with pericentrosomal clustering of ATG12-positive autolysosomes that colocalized with SQSTM1/p62 and ubiquitin, indicating that autophagy induced by hypertonic stress is at least partly selective. Efficient autophagy by hypertonic stress required microtubule remodeling and was DYNC/dynein-dependent as autophagosome clustering was enhanced by paclitaxel-induced microtubule stabilization and was reduced by nocodazole-induced tubulin depolymerization as well as chemical (EHNA) or genetic [DCTN2/dynactin 2 (p50) overexpression] interference of DYNC activity. The data document a general and hitherto overlooked mechanism, where autophagy and microtubule remodeling play prominent roles in the osmoprotective response.


Asunto(s)
Autofagia/efectos de los fármacos , Soluciones Hipertónicas/farmacología , Microtúbulos/metabolismo , Fagosomas/metabolismo , Estrés Fisiológico/efectos de los fármacos , Proteínas Adaptadoras Transductoras de Señales/metabolismo , Animales , Núcleo Celular/efectos de los fármacos , Núcleo Celular/metabolismo , Supervivencia Celular/efectos de los fármacos , Complejo Dinactina , Dineínas/metabolismo , Humanos , Células LLC-PK1 , Lisosomas/efectos de los fármacos , Lisosomas/metabolismo , Proteínas Asociadas a Microtúbulos/metabolismo , Microtúbulos/efectos de los fármacos , Fagosomas/efectos de los fármacos , Porcinos
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