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March 21, 2026Science10 citations

Unstructured transcription factor interactions enable emergent specificity

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AAAbrar A AbidiCCClaudia CattoglioNTNatalie N. Tang

Key Points

  • The study aims to understand how intrinsically disordered regions affect the interactions of transcription factors with chromatin.
  • Utilized proximity-assisted photoactivation (PAPA) to analyze protein-protein interactions
  • Investigated transcription factor interactions in live Drosophila cells
  • Examined the impact of intrinsically disordered regions on DNA binding domains
  • The Sp1 DNA binding domain showed weak interaction with chromatin.
  • Isolated IDR improved binding specificity when attached to various DNA binding domains.
  • Live imaging confirmed that IDRs can give specific binding to otherwise nonspecific DNA binding domains.

Abstract

How intrinsically disordered regions (IDRs) influence chromatin binding and nuclear organization of transcription factors (TFs) remains unclear. We employed proximity-assisted photoactivation (PAPA), a single-molecule protein-protein interaction sensor, to investigate how IDRs might influence TF interactions with each other and with chromatin in live cells. We found that the Sp1 DNA binding domain (DBD) interacted poorly with chromatin and did not colocalize with Sp1. Weak interaction of the isolated IDR with full-length Sp1 was enhanced by fusion to various unrelated DBDs. Live imaging of Drosophila polytene chromosomes confirmed that an IDR could confer sharp locus specificity on an otherwise nonspecific DBD. These findings suggest that TF specificity emerges on chromatin when ensembles of diverse, unstructured interactions are scaffolded by transient DNA contacts.

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Cite This Study

Abidi et al. (2026) studied this question.

synapsesocial.com/papers/69be368a6e48c4981c6757b2https://doi.org/10.1126/science.aeb6487
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