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1.
PLoS Genet ; 17(3): e1009086, 2021 03.
Artículo en Inglés | MEDLINE | ID: mdl-33684100

RESUMEN

Within the glioblastoma cellular niche, glioma stem cells (GSCs) can give rise to differentiated glioma cells (DGCs) and, when necessary, DGCs can reciprocally give rise to GSCs to maintain the cellular equilibrium necessary for optimal tumor growth. Here, using ribosome profiling, transcriptome and m6A RNA sequencing, we show that GSCs from patients with different subtypes of glioblastoma share a set of transcripts, which exhibit a pattern of m6A loss and increased protein translation during differentiation. The target sequences of a group of miRNAs overlap the canonical RRACH m6A motifs of these transcripts, many of which confer a survival advantage in glioblastoma. Ectopic expression of the RRACH-binding miR-145 induces loss of m6A, formation of FTO/AGO1/ILF3/miR-145 complexes on a clinically relevant tumor suppressor gene (CLIP3) and significant increase in its nascent translation. Inhibition of miR-145 maintains RRACH m6A levels of CLIP3 and inhibits its nascent translation. This study highlights a critical role of miRNAs in assembling complexes for m6A demethylation and induction of protein translation during GSC state transition.


Asunto(s)
Adenosina/análogos & derivados , Glioblastoma/genética , MicroARNs/genética , MicroARNs/metabolismo , Biosíntesis de Proteínas , Regiones no Traducidas 3' , Adenosina/metabolismo , Secuencia de Bases , Línea Celular Tumoral , Perfilación de la Expresión Génica , Regulación Neoplásica de la Expresión Génica , Glioblastoma/metabolismo , Humanos , Metilación , Proteínas Asociadas a Microtúbulos/genética , Interferencia de ARN , ARN Mensajero/genética , Transcriptoma , Células Tumorales Cultivadas
2.
J Biol Chem ; 294(43): 15623-15637, 2019 10 25.
Artículo en Inglés | MEDLINE | ID: mdl-31434739

RESUMEN

Defects in the Fanconi anemia (FA) DNA damage-response pathway result in genomic instability, developmental defects, hematopoietic failure, cancer predisposition, and metabolic disorders. The endogenous sources of damage contributing to FA phenotypes and the links between FA and metabolic disease remain poorly understood. Here, using mice lacking the Fancd2 gene, encoding a central FA pathway component, we investigated whether the FA pathway protects against metabolic challenges. Fancd2-/- and wildtype (WT) mice were fed a standard diet (SD), a diet enriched in fat, cholesterol, and cholic acid (Paigen diet), or a diet enriched in lipid alone (high-fat diet (HFD)). Fancd2-/- mice developed hepatobiliary disease and exhibited decreased survival when fed a Paigen diet but not a HFD. Male Paigen diet-fed mice lacking Fancd2 had significant biliary hyperplasia, increased serum bile acid concentration, and increased hepatic pathology. In contrast, female mice were similarly impacted by Paigen diet feeding regardless of Fancd2 status. Upon Paigen diet challenge, male Fancd2-/- mice had altered expression of genes encoding hepatic bile acid transporters and cholesterol and fatty acid metabolism proteins, including Scp2/x, Abcg5/8, Abca1, Ldlr, Srebf1, and Scd-1 Untargeted lipidomic profiling in liver tissue revealed 132 lipid species, including sphingolipids, glycerophospholipids, and glycerolipids, that differed significantly in abundance depending on Fancd2 status in male mice. We conclude that the FA pathway has sex-specific impacts on hepatic lipid and bile acid metabolism, findings that expand the known functions of the FA pathway and may provide mechanistic insight into the metabolic disease predisposition in individuals with FA.


Asunto(s)
Bilis/metabolismo , Dieta , Proteína del Grupo de Complementación D2 de la Anemia de Fanconi/deficiencia , Metabolismo de los Lípidos , Hígado/metabolismo , Caracteres Sexuales , Animales , Colesterol/metabolismo , Daño del ADN , Enfermedades del Sistema Digestivo/metabolismo , Susceptibilidad a Enfermedades , Proteína del Grupo de Complementación D2 de la Anemia de Fanconi/genética , Proteína del Grupo de Complementación D2 de la Anemia de Fanconi/metabolismo , Conducta Alimentaria , Femenino , Regulación de la Expresión Génica , Cinética , Metabolismo de los Lípidos/genética , Masculino , Ratones
3.
Cancer Res ; 83(12): 1984-1999, 2023 06 15.
Artículo en Inglés | MEDLINE | ID: mdl-37101376

RESUMEN

Chitinase 3-like 1 (Chi3l1) is a secreted protein that is highly expressed in glioblastoma. Here, we show that Chi3l1 alters the state of glioma stem cells (GSC) to support tumor growth. Exposure of patient-derived GSCs to Chi3l1 reduced the frequency of CD133+SOX2+ cells and increased the CD44+Chi3l1+ cells. Chi3l1 bound to CD44 and induced phosphorylation and nuclear translocation of ß-catenin, Akt, and STAT3. Single-cell RNA sequencing and RNA velocity following incubation of GSCs with Chi3l1 showed significant changes in GSC state dynamics driving GSCs towards a mesenchymal expression profile and reducing transition probabilities towards terminal cellular states. ATAC-seq revealed that Chi3l1 increases accessibility of promoters containing a Myc-associated zinc finger protein (MAZ) transcription factor footprint. Inhibition of MAZ downregulated a set of genes with high expression in cellular clusters that exhibit significant cell state transitions after treatment with Chi3l1, and MAZ deficiency rescued the Chi3L-induced increase of GSC self-renewal. Finally, targeting Chi3l1 in vivo with a blocking antibody inhibited tumor growth and increased the probability of survival. Overall, this work suggests that Chi3l1 interacts with CD44 on the surface of GSCs to induce Akt/ß-catenin signaling and MAZ transcriptional activity, which in turn upregulates CD44 expression in a pro-mesenchymal feed-forward loop. The role of Chi3l1 in regulating cellular plasticity confers a targetable vulnerability to glioblastoma. SIGNIFICANCE: Chi3l1 is a modulator of glioma stem cell states that can be targeted to promote differentiation and suppress growth of glioblastoma.


Asunto(s)
Neoplasias Encefálicas , Glioblastoma , Glioma , Humanos , Glioblastoma/patología , beta Catenina/metabolismo , Proteínas Proto-Oncogénicas c-akt/metabolismo , Células Madre Neoplásicas/patología , Glioma/metabolismo , Neoplasias Encefálicas/patología , Línea Celular Tumoral , Proliferación Celular
4.
World Neurosurg ; 116: 454-463.e2, 2018 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-29704691

RESUMEN

BACKGROUND: The incidence of 2 distinct tumor types occupying the same anatomic location is rarely observed and may be accounted for by 2 separate mechanisms: tumor-to-tumor metastasis and collision tumors, where 2 adjacent tumors invade one another. These rare phenomena arise from distinct mechanisms, which may affect their preoperative recognition, surgical approach, and postoperative care. We review 2 cases, highlighting their identification and perioperative management. CASE DESCRIPTIONS: In case 1, a 71-year-old patient with a history of sphenoid wing meningioma presented with headache, nausea, and vomiting and was found to have a mass with meningioma and glioblastoma (GBM) characteristics. In case 2, a 61-year-old man with worsening dysmetria in the setting of unintentional weight loss presented with multiple masses in the pelvis, abdomen, lung, and brain. The brain masses were classified as meningioma with intratumoral metastatic adenocarcinoma foci. CONCLUSIONS: Preoperative recognition of collision tumor and tumor-to-tumor metastasis is imperative for surgical planning, including selecting regions for tissue biopsy and goals of care. Meticulous evaluation of history and imaging and thorough pathologic analysis allow for effective diagnosis and optimal patient outcomes.


Asunto(s)
Glioblastoma/patología , Neoplasias Meníngeas/patología , Meningioma/patología , Metástasis de la Neoplasia/patología , Neoplasias Primarias Secundarias/patología , Anciano , Neoplasias Encefálicas/patología , Femenino , Glioblastoma/cirugía , Humanos , Masculino , Neoplasias Meníngeas/cirugía , Meningioma/cirugía , Persona de Mediana Edad , Neoplasias Primarias Secundarias/cirugía
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