The Drosophila ZAD zinc finger protein Mulberry shapes the organization of the regulatory genome in the early embryo
Umemura, Y.; Fukaya, T.
Show abstract
Long-range regulatory interactions play a fundamentally important role in the control of gene activity during animal development, yet the underlying mechanisms remain largely unclear. Here, we identified a zinc finger-associated domain (ZAD)-C2H2 zinc finger protein, CG31365/Mulberry, as a looping factor that mediates long-range tethering activity in the early Drosophila embryo. Evidence is provided that Mulberry is specifically recruited to a subset of loop anchors and topological boundaries at key developmental loci to shape genome organization and gene activity. Super-resolution imaging analysis revealed that Mulberry forms nuclear condensates that associate with its target loci through the structured N-terminal ZAD domain. Micro-C analysis further demonstrated that the formation of loops and boundaries is lost in the condensation-deficient Mulberry mutant in a locus-specific manner. We propose that Mulberry acts as a condensation-dependent structural regulator of genome topology, organizing "multi-way regulatory hubs" that mediate long-range gene activation during early embryogenesis.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Extrusion fountains are hallmarks of chromosome organization emerging upon zygotic genome activation 97%
- YAP charge patterning mediates signal integration through transcriptional co-condensates 97%
- Transcription factor paralogs orchestrate alternative gene regulatory networks by context-dependent cooperation with multiple cofactors 97%
Similar papers in this journal
- Putative Looping Factor ZNF143/ZFP143 is an Essential Transcriptional Regulator with No Looping Function 97%
- Acute multi-level response to defective de novo chromatin assembly in S-phase 96%
- Reconciling competing models on the roles of condensates and soluble complexes in transcription factor function 96%
Similar papers in this journal
- Clusters of lineage-specific genes are anchored by ZNF274 in repressive perinucleolar compartments 96%
- Replication-dependent histone (Repli-Histo) labeling dissects the physical properties of euchromatin/heterochromatin in living human cells. 96%
- CTCF-RNA interactions orchestrate cell-specific chromatin loop organization 96%
Similar papers in this journal
"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.