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1.
EMBO Rep ; 16(6): 719-27, 2015 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-25825408

RESUMEN

In this study, we show for the first time that the therapeutic antagonization of inhibitor of apoptosis proteins (IAPs) inhibits B16 melanoma growth by disrupting tumor vasculature. Specifically, the treatment of mice bearing B16 melanoma with an IAP antagonist compound A (Comp A) inhibits tumor growth not by inducing direct cytotoxicity against B16 cells but rather by a hitherto unrecognized antiangiogenic activity against tumor vessels. Our detailed analysis showed that Comp A treatment induces NF-κB activity in B16 tumor cells and facilitates the production of TNF. In the presence of Comp A, endothelial cells (ECs) become highly susceptible to TNF and undergo apoptotic cell death. Accordingly, the antiangiogenic and growth-attenuating effects of Comp A treatment were completely abolished in TNF-R knockout mice. This novel targeting approach could be of clinical value in controlling pathological neoangiogenesis under inflammatory condition while sparing blood vessels under normal condition.


Asunto(s)
Inhibidores de la Angiogénesis/farmacología , Endotelio Vascular/patología , Proteínas Inhibidoras de la Apoptosis/antagonistas & inhibidores , Melanoma Experimental/irrigación sanguínea , Melanoma Experimental/tratamiento farmacológico , Animales , Apoptosis/efectos de los fármacos , Inflamación/fisiopatología , Melanoma Experimental/metabolismo , Melanoma Experimental/patología , Ratones , Ratones Noqueados , FN-kappa B/metabolismo , Neovascularización Patológica , Receptores del Factor de Necrosis Tumoral/genética , Factor de Necrosis Tumoral alfa/metabolismo
2.
PLoS Pathog ; 10(9): e1004351, 2014 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-25187968

RESUMEN

NOD1 is an intracellular pathogen recognition receptor that contributes to anti-bacterial innate immune responses, adaptive immunity and tissue homeostasis. NOD1-induced signaling relies on actin remodeling, however, the details of the connection of NOD1 and the actin cytoskeleton remained elusive. Here, we identified in a druggable-genome wide siRNA screen the cofilin phosphatase SSH1 as a specific and essential component of the NOD1 pathway. We show that depletion of SSH1 impaired pathogen induced NOD1 signaling evident from diminished NF-κB activation and cytokine release. Chemical inhibition of actin polymerization using cytochalasin D rescued the loss of SSH1. We further demonstrate that NOD1 directly interacted with SSH1 at F-actin rich sites. Finally, we show that enhanced cofilin activity is intimately linked to NOD1 signaling. Our data thus provide evidence that NOD1 requires the SSH1/cofilin network for signaling and to detect bacterial induced changes in actin dynamics leading to NF-κB activation and innate immune responses.


Asunto(s)
Actinas/metabolismo , Cofilina 1/metabolismo , Disentería Bacilar/microbiología , Proteína Adaptadora de Señalización NOD1/metabolismo , Fosfoproteínas Fosfatasas/metabolismo , Shigella flexneri/fisiología , Actinas/química , Western Blotting , Células Cultivadas , Cofilina 1/genética , Ensayo de Inmunoadsorción Enzimática , Técnica del Anticuerpo Fluorescente Indirecta , Regulación de la Expresión Génica , Células HeLa , Ensayos Analíticos de Alto Rendimiento , Humanos , Técnicas para Inmunoenzimas , Inmunoprecipitación , Inflamación , Mediadores de Inflamación/metabolismo , FN-kappa B/genética , FN-kappa B/metabolismo , Proteína Adaptadora de Señalización NOD1/antagonistas & inhibidores , Proteína Adaptadora de Señalización NOD1/genética , Fosfoproteínas Fosfatasas/genética , Fosforilación , ARN Mensajero/genética , ARN Interferente Pequeño/genética , Reacción en Cadena en Tiempo Real de la Polimerasa , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Transducción de Señal
3.
EMBO J ; 33(19): 2171-87, 2014 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-25056906

RESUMEN

The X-linked inhibitor of apoptosis protein (XIAP) is a potent caspase inhibitor, best known for its anti-apoptotic function in cancer. During apoptosis, XIAP is antagonized by SMAC, which is released from the mitochondria upon caspase-mediated activation of BID. Recent studies suggest that XIAP is involved in immune signaling. Here, we explore XIAP as an important mediator of an immune response against the enteroinvasive bacterium Shigella flexneri, both in vitro and in vivo. Our data demonstrate for the first time that Shigella evades the XIAP-mediated immune response by inducing the BID-dependent release of SMAC from the mitochondria. Unlike apoptotic stimuli, Shigella activates the calpain-dependent cleavage of BID to trigger the release of SMAC, which antagonizes the inflammatory action of XIAP without inducing apoptosis. Our results demonstrate how the cellular death machinery can be subverted by an invasive pathogen to ensure bacterial colonization.


Asunto(s)
Proteína Proapoptótica que Interacciona Mediante Dominios BH3/fisiología , Proteínas Portadoras/metabolismo , Disentería Bacilar/inmunología , Mitocondrias/inmunología , Proteínas Mitocondriales/metabolismo , Shigella/inmunología , Proteína Inhibidora de la Apoptosis Ligada a X/fisiología , Animales , Apoptosis , Proteínas Reguladoras de la Apoptosis , Western Blotting , Caspasas/metabolismo , Proliferación Celular , Células Cultivadas , Disentería Bacilar/microbiología , Disentería Bacilar/patología , Femenino , Hepatocitos/inmunología , Hepatocitos/metabolismo , Hepatocitos/patología , Técnicas para Inmunoenzimas , Integrasas/metabolismo , Masculino , Potencial de la Membrana Mitocondrial , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Mitocondrias/metabolismo , Mitocondrias/patología , Proteínas Mitocondriales/inmunología , ARN Mensajero/genética , Reacción en Cadena en Tiempo Real de la Polimerasa , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Shigella/patogenicidad , Transducción de Señal , Espectrometría de Masa por Ionización de Electrospray , Espectrometría de Masas en Tándem
4.
EMBO Mol Med ; 6(5): 624-39, 2014 May.
Artículo en Inglés | MEDLINE | ID: mdl-24648500

RESUMEN

In the normal quiescent vasculature, only 0.01% of endothelial cells (ECs) are proliferating. However, this proportion increases dramatically following the angiogenic switch during tumor growth or wound healing. Recent evidence suggests that this angiogenic switch is accompanied by a metabolic switch. Here, we show that proliferating ECs increasingly depend on mitochondrial oxidative phosphorylation (OxPhos) for their increased energy demand. Under growth conditions, ECs consume three times more oxygen than quiescent ECs and work close to their respiratory limit. The increased utilization of the proton motif force leads to a reduced mitochondrial membrane potential in proliferating ECs and sensitizes to mitochondrial uncoupling. The benzoquinone embelin is a weak mitochondrial uncoupler that prevents neoangiogenesis during tumor growth and wound healing by exhausting the low respiratory reserve of proliferating ECs without adversely affecting quiescent ECs. We demonstrate that this can be exploited therapeutically by attenuating tumor growth in syngenic and xenograft mouse models. This novel metabolic targeting approach might be clinically valuable in controlling pathological neoangiogenesis while sparing normal vasculature and complementing cytostatic drugs in cancer treatment.


Asunto(s)
Benzoquinonas/farmacología , Respiración de la Célula/efectos de los fármacos , Células Endoteliales/efectos de los fármacos , Mitocondrias/efectos de los fármacos , Neovascularización Patológica , Neovascularización Fisiológica/efectos de los fármacos , Desacopladores/farmacología , Animales , Antineoplásicos/farmacología , Antineoplásicos/uso terapéutico , Modelos Animales de Enfermedad , Ratones , Mitocondrias/metabolismo , Neoplasias/tratamiento farmacológico , Desacopladores/uso terapéutico , Cicatrización de Heridas/efectos de los fármacos
5.
Cell Rep ; 3(3): 881-91, 2013 Mar 28.
Artículo en Inglés | MEDLINE | ID: mdl-23499448

RESUMEN

The BH3-only protein NOXA represents one of the critical mediators of DNA-damage-induced cell death. In particular, its involvement in cellular responses to cancer chemotherapy is increasingly evident. Here, we identify a strategy of cancer cells to escape genotoxic chemotherapy by increasing proteasomal degradation of NOXA. We show that the deubiquitylating enzyme UCH-L1 is a key regulator of NOXA turnover, which protects NOXA from proteasomal degradation by removing Lys(48)-linked polyubiquitin chains. In the majority of tumors from patients with melanoma or colorectal cancer suffering from high rates of chemoresistance, NOXA fails to accumulate because UCH-L1 expression is epigenetically silenced. Whereas UCH-L1/NOXA-positive tumor samples exhibit increased sensitivity to genotoxic chemotherapy, downregulation of UCH-L1 or inhibition of its deubiquitylase activity resulted in reduced NOXA stability and resistance to genotoxic chemotherapy in both human and C. elegans cells. Our data identify the UCH-L1/NOXA interaction as a therapeutic target for overcoming cancer chemoresistance.


Asunto(s)
Antineoplásicos/farmacología , Resistencia a Antineoplásicos , Proteínas Proto-Oncogénicas c-bcl-2/metabolismo , Ubiquitina Tiolesterasa/metabolismo , Ubiquitinación , Animales , Antineoplásicos/uso terapéutico , Apoptosis , Caenorhabditis elegans/efectos de los fármacos , Caenorhabditis elegans/genética , Caenorhabditis elegans/metabolismo , Línea Celular Tumoral , Neoplasias Colorrectales/tratamiento farmacológico , Daño del ADN , Regulación hacia Abajo , Silenciador del Gen , Humanos , Melanoma/tratamiento farmacológico , Complejo de la Endopetidasa Proteasomal/metabolismo , Estabilidad Proteica , Proteolisis , Proteínas Proto-Oncogénicas c-bcl-2/genética , ARN Interferente Pequeño , Ubiquitina/metabolismo , Ubiquitina Tiolesterasa/genética
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