The Drosophila FET orthologue Cabeza is an essential cofactor for ETV4-mediated activation of GGAA microsatellite neoenhancers
Molnar, C.; Reina, J.; Mora, J.; Gonzalez, C.
Show abstract
The conversion of transcriptionally silent GGAA microsatellites (GGAASats) into functional enhancers by FET::ETS oncogenic fusions is a hallmark of Ewing sarcoma. However, emerging evidence implicates non-fused, full-length oncogenic ETS transcription factors in activating these repeats in other malignancies. Evaluating the in vivo transcriptional requirements of various human ETS factors in Drosophila, we found that human ETV4 uniquely binds and robustly activates GGAASats in a tissue-specific manner. This activation is strongly inhibited by the human ETS repressor ETV6. Taking advantage of low genetic redundancy in Drosophila, we identified Cabeza (Caz), the single fly FET orthologue, as a necessary cofactor for ETV4-mediated transcription at GGAASats. Conversely, EWS::FLI1-mediated transcriptional activation of GGAASats is entirely independent of endogenous Caz, highlighting the distinct mechanics of covalent tethering versus non-covalent physical complexes. Collectively, our findings provide definitive in vivo evidence that non-fused ETS factors cooperate with endogenous FET proteins to drive transcription from silent GGAA repeats, mechanistically validating this regulatory transformation known to operate as an oncogenic mechanism beyond Ewing sarcoma.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Catalytic activity of the Bin3/MEPCE methyltransferase domain is dispensable for 7SK snRNP function in Drosophila melanogaster 94%
- A genetic toolkit for studying transposon control in the Drosophila melanogaster ovary 94%
- Conserved and divergent aspects of Robo receptor signaling and regulation between Drosophila Robo1 and C. elegans SAX-3 94%
Similar papers in this journal
- Ambivalent partnership of the Drosophila posterior class Hox protein Abdominal-B with the Extradenticle and Homothorax cofactors 95%
- Ush regulates hemocyte-specific gene expression, fatty acid metabolism and cell cycle progression and cooperates with dNuRD to orchestrate hematopoiesis 95%
- A Van Gogh/Vangl tyrosine phosphorylation switch regulates its interaction with core Planar Cell Polarity factors Prickle and Dishevelled 94%
Similar papers in this journal
- A time resolved interaction analysis of Bem1 reconstructs the flow of Cdc42 during polar growth 93%
- Rbfox1 is required for myofibril development and maintaining fiber-type specific isoform expression in Drosophila muscles 92%
- RB dependent transcriptional regulation at mitotic centromeres preserves genome stability 92%
Similar papers in this journal
- The NDNF-like factor Nord is a Hedgehog-induced extracellular BMP modulator that regulates Drosophila wing patterning and growth 94%
- delilah, prospero and D-Pax2 constitute a gene regulatory network essential for the development of functional proprioceptors 94%
- The Transcription Factor Xrp1 is Required for PERK-Mediated Antioxidant Gene Induction in Drosophila 94%
Similar papers in this journal
- Pegasus, a small extracellular peptide regulating the short-range diffusion of Wingless 94%
- ReLo is a simple and quick colocalization assay to identify and characterize direct protein-protein interactions 94%
- Cell-type-specific chromatin occupancy by the pioneer factor Zelda drives key developmental transitions in Drosophila 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.