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1.
Elife ; 122024 Oct 07.
Article de Anglais | MEDLINE | ID: mdl-39373720

RÉSUMÉ

Pediatric diffuse midline gliomas (pDMG) are an aggressive type of childhood cancer with a fatal outcome. Their major epigenetic determinism has become clear, notably with the identification of K27M mutations in histone H3. However, the synergistic oncogenic mechanisms that induce and maintain tumor cell phenotype have yet to be deciphered. In 20 to 30% of cases, these tumors have an altered BMP signaling pathway with an oncogenic mutation on the BMP type I receptor ALK2, encoded by ACVR1. However, the potential impact of the BMP pathway in tumors non-mutated for ACVR1 is less clear. By integrating bulk, single-cell, and spatial transcriptomic data, we show here that the BMP signaling pathway is activated at similar levels between ACVR1 wild-type and mutant tumors and identify BMP2 and BMP7 as putative activators of the pathway in a specific subpopulation of cells. By using both pediatric isogenic glioma lines genetically modified to overexpress H3.3K27M and patients-derived DIPG cell lines, we demonstrate that BMP2/7 synergizes with H3.3K27M to induce a transcriptomic rewiring associated with a quiescent but invasive cell state. These data suggest a generic oncogenic role for the BMP pathway in gliomagenesis of pDMG and pave the way for specific targeting of downstream effectors mediating the K27M/BMP crosstalk.


Sujet(s)
Protéine morphogénétique osseuse de type 2 , Protéine morphogénétique osseuse de type 7 , Gliome , Histone , Humains , Protéine morphogénétique osseuse de type 2/métabolisme , Protéine morphogénétique osseuse de type 2/génétique , Protéine morphogénétique osseuse de type 7/métabolisme , Protéine morphogénétique osseuse de type 7/génétique , Histone/métabolisme , Histone/génétique , Gliome/génétique , Gliome/métabolisme , Gliome/anatomopathologie , Lignée cellulaire tumorale , Transduction du signal , Récepteur activine, type 1/métabolisme , Récepteur activine, type 1/génétique , Enfant , Tumeurs du cerveau/génétique , Tumeurs du cerveau/métabolisme , Tumeurs du cerveau/anatomopathologie , Invasion tumorale , Mutation , Régulation de l'expression des gènes tumoraux
2.
Cell Rep ; 42(1): 111967, 2023 01 31.
Article de Anglais | MEDLINE | ID: mdl-36640345

RÉSUMÉ

Hox genes encode transcription factors that specify segmental identities along the anteroposterior body axis. These genes are organized in clusters, where their order corresponds to their activity along the body axis, a feature known as collinearity. In Drosophila, the BX-C cluster contains the three most posterior Hox genes, where their collinear activation incorporates progressive changes in histone modifications, chromatin architecture, and use of boundary elements and cis-regulatory regions. To dissect functional hierarchies, we compare chromatin organization in cell lines and larvae, with a focus on the Abd-B gene. Our work establishes the importance of the Fab-7 boundary for insulation between 3D domains carrying different histone modifications. Interestingly, we detect a non-canonical inversion of collinear chromatin dynamics at Abd-B, with the domain of active histone modifications progressively decreasing in size. This dynamic chromatin organization differentially activates the alternative promoters of the Abd-B gene, thereby expanding the possibilities for fine-tuning of transcriptional output.


Sujet(s)
Protéines de Drosophila , Drosophila , Animaux , Drosophila/génétique , Drosophila/métabolisme , Protéines de Drosophila/génétique , Protéines de Drosophila/métabolisme , Protéines à homéodomaine/métabolisme , Régions promotrices (génétique)/génétique , Séquences d'acides nucléiques régulatrices , Gènes homéotiques , Chromatine , Régulation de l'expression des gènes au cours du développement
3.
PLoS Genet ; 18(5): e1009782, 2022 05.
Article de Anglais | MEDLINE | ID: mdl-35604932

RÉSUMÉ

The hallmarks of the alveolar subclass of rhabdomyosarcoma are chromosomal translocations that generate chimeric PAX3-FOXO1 or PAX7-FOXO1 transcription factors. Overexpression of either PAX-FOXO1s results in related cell transformation in animal models. Yet, in patients the two structural genetic aberrations they derived from are associated with distinct pathological manifestations. To assess the mechanisms underlying these differences, we generated isogenic fibroblast lines expressing either PAX-FOXO1 paralog. Mapping of their genomic recruitment using CUT&Tag revealed that the two chimeric proteins have distinct DNA binding preferences. In addition, PAX7-FOXO1 binding results in greater recruitment of the H3K27ac activation mark than PAX3-FOXO1 binding and is accompanied by greater transcriptional activation of neighbouring genes. These effects are associated with a PAX-FOXO1-specific alteration in the expression of genes regulating cell shape and the cell cycle. Consistently, PAX3-FOXO1 accentuates fibroblast cellular traits associated with contractility and surface adhesion and limits entry into S phase. In contrast, PAX7-FOXO1 drives cells to adopt an amoeboid shape, reduces entry into M phase, and causes increased DNA damage. Altogether, our results argue that the diversity of rhabdomyosarcoma manifestation arises, in part, from the divergence between the genomic occupancy and transcriptional activity of PAX3-FOXO1 and PAX7-FOXO1.


Sujet(s)
Protéines de fusion oncogènes , Facteurs de transcription PAX , Rhabdomyosarcome alvéolaire , Animaux , Lignée cellulaire , Transformation cellulaire néoplasique/génétique , Fibroblastes , Protéine O1 à motif en tête de fourche/génétique , Facteurs de transcription Forkhead/génétique , Humains , Protéines de fusion oncogènes/génétique , Facteur de transcription PAX3/génétique , Facteur de transcription PAX7/génétique , Facteurs de transcription PAX/génétique , Rhabdomyosarcome/génétique , Rhabdomyosarcome alvéolaire/génétique
4.
PLoS Genet ; 16(11): e1009164, 2020 11.
Article de Anglais | MEDLINE | ID: mdl-33175861

RÉSUMÉ

The chromosome translocations generating PAX3-FOXO1 and PAX7-FOXO1 chimeric proteins are the primary hallmarks of the paediatric fusion-positive alveolar subtype of Rhabdomyosarcoma (FP-RMS). Despite the ability of these transcription factors to remodel chromatin landscapes and promote the expression of tumour driver genes, they only inefficiently promote malignant transformation in vivo. The reason for this is unclear. To address this, we developed an in ovo model to follow the response of spinal cord progenitors to PAX-FOXO1s. Our data demonstrate that PAX-FOXO1s, but not wild-type PAX3 or PAX7, trigger the trans-differentiation of neural cells into FP-RMS-like cells with myogenic characteristics. In parallel, PAX-FOXO1s remodel the neural pseudo-stratified epithelium into a cohesive mesenchyme capable of tissue invasion. Surprisingly, expression of PAX-FOXO1s, similar to wild-type PAX3/7, reduce the levels of CDK-CYCLIN activity and increase the fraction of cells in G1. Introduction of CYCLIN D1 or MYCN overcomes this PAX-FOXO1-mediated cell cycle inhibition and promotes tumour growth. Together, our findings reveal a mechanism that can explain the apparent limited oncogenicity of PAX-FOXO1 fusion transcription factors. They are also consistent with certain clinical reports indicative of a neural origin of FP-RMS.


Sujet(s)
Transdifférenciation cellulaire/génétique , Transformation cellulaire néoplasique/génétique , Protéines de fusion oncogènes/métabolisme , Facteurs de transcription PAX/métabolisme , Rhabdomyosarcome alvéolaire/génétique , Animaux , Biopsie , Embryon de poulet , Enfant , Cycline D1/génétique , Jeux de données comme sujet , Modèles animaux de maladie humaine , Analyse de profil d'expression de gènes , Régulation de l'expression des gènes tumoraux , Humains , Protéine du proto-oncogène N-Myc/génétique , Invasion tumorale/génétique , Cellules souches neurales/anatomopathologie , Tube neural/cytologie , Protéines de fusion oncogènes/génétique , Facteur de transcription PAX3/génétique , Facteur de transcription PAX3/métabolisme , Facteur de transcription PAX7/génétique , Facteur de transcription PAX7/métabolisme , Facteurs de transcription PAX/génétique , Rhabdomyosarcome alvéolaire/anatomopathologie , Phase S/génétique
5.
Methods Mol Biol ; 2011: 121-132, 2019.
Article de Anglais | MEDLINE | ID: mdl-31273697

RÉSUMÉ

Zebrafish are an emerging model in behavioral neuroscience. They display a wide range of measurable behaviors such as locomotion, aggression, anxiety, learning and memory, and social behavior. In addition, the relative ease of genetic manipulation and the increasing availability of disease models mean that zebrafish have gained in popularity as an animal model for various neurological and psychiatric diseases including autism spectrum disorder (ASD). In order to better characterize social behavior and behavioral abnormalities in zebrafish, we have developed the visually mediated social preference (VMSP) test, a novel assay to measure social preference and social novelty in two consecutive 5-min sessions. Using recording and video tracking, the time spent in different areas of the tank, the time spent immobile, swimming speed, and distance moved can be easily measured and analyzed. Untreated experimentally naive AB WT zebrafish typically show a strong preference for spending time near and interacting with a compartment containing unfamiliar conspecifics over the empty compartments during session 1 and a stronger preference for a group of unfamiliar zebrafish over familiar conspecifics from session 1, during session 2 of the test. Research in our lab has shown that the VMSP is suitable to measure the social behavior of individual zebrafish, to uncover social phenotypes of mutant strains, and to better understand animal models of disease that include impaired sociability such as ASD. The current paper provides a step-by-step guide on how to implement and perform this test and highlights important considerations for data acquisition, analysis, and interpretation.


Sujet(s)
Comportement animal , Comportement social , Danio zébré , Animaux , Trouble du spectre autistique/étiologie , Trouble du spectre autistique/psychologie , Interprétation statistique de données , Modèles animaux de maladie humaine , Prédisposition aux maladies
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