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1.
Cancer Cell ; 9(5): 379-90, 2006 May.
Artículo en Inglés | MEDLINE | ID: mdl-16697958

RESUMEN

Histiocytic sarcoma (HS) is a rare malignant proliferation of histiocytes of uncertain molecular pathogenesis. Here, genetic analysis of coincident loss of Pten and Ink4a/Arf tumor suppressors in the mouse revealed a neoplastic phenotype dominated by a premalignant expansion of biphenotypic myelolymphoid cells followed by the development of HS. Pten protein loss occurred only in the histiocytic portion of tumors, suggesting a stepwise genetic inactivation in the generation of HS. Similarly, human HS showed genetic or epigenetic inactivation of PTEN, p16(INK4A), and p14(ARF), supporting the relevance of this genetically engineered mouse model of HS. These genetic and translational observations establish a cooperative role of Pten and Ink4a/Arf in the development of HS and provide mechanistic insights into the pathogenesis of human HS.


Asunto(s)
Inhibidor p16 de la Quinasa Dependiente de Ciclina/metabolismo , Trastornos Histiocíticos Malignos/patología , Linfocitos/inmunología , Células Mieloides/inmunología , Fosfohidrolasa PTEN/metabolismo , Sarcoma/patología , Proteína p14ARF Supresora de Tumor/metabolismo , Animales , Activación Enzimática , Quinasas MAP Reguladas por Señal Extracelular/metabolismo , Trastornos Histiocíticos Malignos/inmunología , Homeostasis , Humanos , Inmunofenotipificación , Metilación , Ratones , Mutación/genética , Fosfohidrolasa PTEN/deficiencia , Proteínas Proto-Oncogénicas c-akt/metabolismo , Sarcoma/inmunología , Proteína p14ARF Supresora de Tumor/deficiencia
2.
Nature ; 455(7216): 1129-33, 2008 Oct 23.
Artículo en Inglés | MEDLINE | ID: mdl-18948956

RESUMEN

Glioblastoma (GBM) is a highly lethal brain tumour presenting as one of two subtypes with distinct clinical histories and molecular profiles. The primary GBM subtype presents acutely as a high-grade disease that typically harbours mutations in EGFR, PTEN and INK4A/ARF (also known as CDKN2A), and the secondary GBM subtype evolves from the slow progression of a low-grade disease that classically possesses PDGF and TP53 events. Here we show that concomitant central nervous system (CNS)-specific deletion of p53 and Pten in the mouse CNS generates a penetrant acute-onset high-grade malignant glioma phenotype with notable clinical, pathological and molecular resemblance to primary GBM in humans. This genetic observation prompted TP53 and PTEN mutational analysis in human primary GBM, demonstrating unexpectedly frequent inactivating mutations of TP53 as well as the expected PTEN mutations. Integrated transcriptomic profiling, in silico promoter analysis and functional studies of murine neural stem cells (NSCs) established that dual, but not singular, inactivation of p53 and Pten promotes an undifferentiated state with high renewal potential and drives increased Myc protein levels and its associated signature. Functional studies validated increased Myc activity as a potent contributor to the impaired differentiation and enhanced renewal of NSCs doubly null for p53 and Pten (p53(-/-) Pten(-/-)) as well as tumour neurospheres (TNSs) derived from this model. Myc also serves to maintain robust tumorigenic potential of p53(-/-) Pten(-/-) TNSs. These murine modelling studies, together with confirmatory transcriptomic/promoter studies in human primary GBM, validate a pathogenetic role of a common tumour suppressor mutation profile in human primary GBM and establish Myc as an important target for cooperative actions of p53 and Pten in the regulation of normal and malignant stem/progenitor cell differentiation, self-renewal and tumorigenic potential.


Asunto(s)
Neoplasias Encefálicas/patología , Diferenciación Celular , Glioma/patología , Células Madre Neoplásicas/patología , Neuronas/patología , Fosfohidrolasa PTEN/metabolismo , Proteína p53 Supresora de Tumor/metabolismo , Animales , Neoplasias Encefálicas/genética , Proliferación Celular , Regulación de la Expresión Génica , Glioblastoma/genética , Glioblastoma/patología , Glioma/genética , Humanos , Inmunohistoquímica , Ratones , Células Madre Neoplásicas/metabolismo , Neuronas/metabolismo , Fosfohidrolasa PTEN/genética , Proteínas Proto-Oncogénicas c-myc/genética , Proteínas Proto-Oncogénicas c-myc/metabolismo , Proteína p53 Supresora de Tumor/genética
3.
Oncotarget ; 7(49): 80435-80449, 2016 Dec 06.
Artículo en Inglés | MEDLINE | ID: mdl-27741516

RESUMEN

Metabolic shift toward aerobic glycolysis is a fundamental element contributing to the development and progression of clear cell renal cell carcinoma (ccRCC). We and others previously observed enhanced glycolysis and diminished tricarboxylic acid (TCA) cycle activity in ccRCC tissue. Here, by integrated gene expression and metabolomic analyses of 36 matched pairs of tumor and adjacent normal tissues, we showed that expression of Sentrin/SUMO-specific protease 1 (SENP1) is positively associated with glycolysis levels in ccRCC. Moreover, SENP1 knockdown in RCC4/VHL cells downregulated expression of key glycolytic enzymes under normoxic and hypoxic conditions and inhibited cell proliferation under hypoxic conditions, possibly due to ineffective deSUMOylation and stablization of Hif-1α related to the SENP-1 deficiency. Finally, SENP1 expression correlated positively with tumor pathological grade and was an indicator of poor overall survival and advanced tumor progression in ccRCC. Altered VHL gene function is found in 60-90% ccRCC cases of ccRCC, but therapies targeting VHL-related signaling pathways have been ineffective, spurring exploration of alternative pathological signaling events. Our results provide a possible mechanistic explanation for the role of SENP1 in the initiation and development of ccRCC with normal VHL activity, and identifies SENP1 as a potential treatment target for the disease.


Asunto(s)
Carcinoma de Células Renales/enzimología , Proliferación Celular , Cisteína Endopeptidasas/metabolismo , Glucólisis , Neoplasias Renales/enzimología , Carcinoma de Células Renales/genética , Carcinoma de Células Renales/mortalidad , Carcinoma de Células Renales/patología , Línea Celular Tumoral , Cisteína Endopeptidasas/genética , Femenino , Regulación Enzimológica de la Expresión Génica , Regulación Neoplásica de la Expresión Génica , Humanos , Subunidad alfa del Factor 1 Inducible por Hipoxia/metabolismo , Estimación de Kaplan-Meier , Neoplasias Renales/genética , Neoplasias Renales/mortalidad , Neoplasias Renales/patología , Masculino , Persona de Mediana Edad , Estadificación de Neoplasias , Estabilidad Proteica , Proteolisis , Interferencia de ARN , Transducción de Señal , Sumoilación , Factores de Tiempo , Transfección , Hipoxia Tumoral , Proteína Supresora de Tumores del Síndrome de Von Hippel-Lindau/genética , Proteína Supresora de Tumores del Síndrome de Von Hippel-Lindau/metabolismo
4.
Nat Genet ; 41(5): 544-52, 2009 May.
Artículo en Inglés | MEDLINE | ID: mdl-19282848

RESUMEN

Mutational activation of BRAF is the earliest and most common genetic alteration in human melanoma. To build a model of human melanoma, we generated mice with conditional melanocyte-specific expression of BRaf(V600E). Upon induction of BRaf(V600E) expression, mice developed benign melanocytic hyperplasias that failed to progress to melanoma over 15-20 months. By contrast, expression of BRaf(V600E) combined with Pten tumor suppressor gene silencing elicited development of melanoma with 100% penetrance, short latency and with metastases observed in lymph nodes and lungs. Melanoma was prevented by inhibitors of mTorc1 (rapamycin) or MEK1/2 (PD325901) but, upon cessation of drug administration, mice developed melanoma, indicating the presence of long-lived melanoma-initiating cells in this system. Notably, combined treatment with rapamycin and PD325901 led to shrinkage of established melanomas. These mice, engineered with a common genetic profile to human melanoma, provide a system to study melanoma's cardinal feature of metastasis and for preclinical evaluation of agents designed to prevent or treat metastatic disease.


Asunto(s)
Melanoma/genética , Melanoma/patología , Fosfohidrolasa PTEN/genética , Proteínas Proto-Oncogénicas B-raf/genética , Alelos , Animales , Línea Celular Tumoral , Proliferación Celular , Diana Mecanicista del Complejo 1 de la Rapamicina , Melanoma/metabolismo , Ratones , Ratones Transgénicos , Complejos Multiproteicos , Metástasis de la Neoplasia , Fosfohidrolasa PTEN/metabolismo , Proteínas , Proteínas Proto-Oncogénicas B-raf/metabolismo , Serina-Treonina Quinasas TOR , Factores de Transcripción/genética , Factores de Transcripción/metabolismo
5.
Genes Dev ; 22(4): 449-62, 2008 Feb 15.
Artículo en Inglés | MEDLINE | ID: mdl-18258752

RESUMEN

Activation of the transcription factor STAT3 is thought to potently promote oncogenesis in a variety of tissues, leading to intense efforts to develop STAT3 inhibitors for many tumors, including the highly malignant brain tumor glioblastoma. However, the function of STAT3 in glioblastoma pathogenesis has remained unknown. Here, we report that STAT3 plays a pro-oncogenic or tumor-suppressive role depending on the mutational profile of the tumor. Deficiency of the tumor suppressor PTEN triggers a cascade that inhibits STAT3 signaling in murine astrocytes and human glioblastoma tumors. Specifically, we forge a direct link between the PTEN-Akt-FOXO axis and the leukemia inhibitory factor receptor beta (LIFRbeta)-STAT3 signaling pathway. Accordingly, PTEN knockdown induces efficient malignant transformation of astrocytes upon knockout of the STAT3 gene. Remarkably, in contrast to the tumor-suppressive function of STAT3 in the PTEN pathway, STAT3 forms a complex with the oncoprotein epidermal growth factor receptor type III variant (EGFRvIII) in the nucleus and thereby mediates EGFRvIII-induced glial transformation. These findings indicate that STAT3 plays opposing roles in glial transformation depending on the genetic background of the tumor, providing the rationale for tailored therapeutic intervention in glioblastoma.


Asunto(s)
Neoplasias Encefálicas/metabolismo , Genes Supresores de Tumor , Glioblastoma/metabolismo , Fosfohidrolasa PTEN/fisiología , Factor de Transcripción STAT3/metabolismo , Animales , Neoplasias Encefálicas/patología , Núcleo Celular/metabolismo , Transformación Celular Neoplásica , Células Cultivadas , Inmunoprecipitación de Cromatina , Colágeno/metabolismo , Combinación de Medicamentos , Receptores ErbB/metabolismo , Proteína Forkhead Box O3 , Factores de Transcripción Forkhead/metabolismo , Glioblastoma/patología , Humanos , Immunoblotting , Técnicas para Inmunoenzimas , Laminina/metabolismo , Subunidad alfa del Receptor del Factor Inhibidor de Leucemia/genética , Subunidad alfa del Receptor del Factor Inhibidor de Leucemia/metabolismo , Ratones , Ratones Noqueados , Ratones SCID , Fosfatidilinositol 3-Quinasas/metabolismo , Fosforilación , Plásmidos , Proteoglicanos/metabolismo , Proteínas Proto-Oncogénicas c-akt/fisiología , Factor de Transcripción STAT3/genética , Transducción de Señal
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