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March 1, 20263 citations

Mechanism of interaction between the transactivation domain of N-myc and the DNA-binding surface of TFIIIC5.

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ELEoin LeenSYSharon YeohESEka Sahak

Key Points

  • The aim is to understand the interaction mechanisms between the transactivation domain of N-myc and the DNA-binding surface of TFIIIC5.
  • Utilized NMR spectroscopy to analyze protein interactions.
  • Conducted hydrogen-deuterium exchange mass spectrometry for structural insights.
  • Implemented interaction assays including pull-downs and co-immunoprecipitation.
  • Applied fluorescence polarization for binding affinity analysis.
  • Employed AlphaFold modelling to predict interaction sites.
  • Identified TFIIIC5 as a binding site for N-myc's transactivation domain.
  • Showed that the removal of the acidic plug from TFIIIC5 enhances N-myc binding.
  • Demonstrated the competition between N-myc:TFIIIC5 interaction and DNA-binding.

Abstract

N-myc is a transcription factor, a powerful driver of cellular growth and an important oncoprotein. N-myc interacts with many factors, including the RNA Polymerase III assembly factor, TFIIIC, a six-subunit complex that is essential for the transcription of small, structured RNA. TFIIIC and N-myc mutually restrict each other's chromatin association, and their complex contributes to quality control in mRNA transcription. We previously demonstrated that the intrinsically disordered transactivation domain of N-myc interacts directly with a sub-complex of TFIIIC, τA. Structural studies by others show that DNA binding of τA is largely mediated by TFIIIC3, leaving open the role of the DNA-binding domain of TFIIIC5. Here, we demonstrate that this domain is a binding site for two regions in the transactivation domain of N-myc, through an integrated approach combining NMR spectroscopy, hydrogen-deuterium exchange mass spectrometry, and interaction assays (pull-downs, ITC, fluorescence polarization, and co-immunoprecipitation). AlphaFold modelling predicts with high-confidence a binding mode for the higher affinity N-myc motif that overlaps with the predicted intramolecular binding site of the C-terminal acidic plug of TFIIIC5, removal of which enhances the binding of N-myc. This model elucidates how the N-myc:TFIIIC5 interaction competes with DNA and other interactions, providing a basis for their mutual regulation.

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Cite This Study

Leen et al. (2026) studied this question.

synapsesocial.com/papers/69a3d8caec16d51705d2ff76https://doi.org/10.1093/nar/gkag181
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