Targeting oncogenic transcriptional corepressor Nac1 POZ domain with conformationally constrained peptides by

Tao Wu1, Ping He1, Wei Wu1

  • 1Department of Cardiothoracic Surgery, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.

Insights

Researchers identified key peptide segments from the Nac1 protein

Area of Science:

  • Biochemistry
  • Structural Biology
  • Cancer Research

Background:

  • The oncogenic transcriptional corepressor Nac1 features a POZ domain involved in protein-protein interactions.
  • Nac1's dimerization capability presents a potential therapeutic target for cancer treatment.

Purpose of the Study:

  • To identify Nac1 binding partners within the human genome.
  • To derive and enhance peptide segments from the Nac1 interaction interface for improved binding affinity.

Main Methods:

  • Computational modeling and simulation of Nac1 POZ domain dimerization with 136 human POZ domains.
  • Identification of critical 'hotspot' regions (α1-helix and α2/α3-hairpin) at the dimerization interface.
  • Rational design of stapled and cyclized peptides to reduce conformational flexibility and enhance binding affinity.

Main Results:

  • Two key regions, α1-helix and α2/α3-hairpin, were identified as crucial for stabilizing Nac1 POZ-POZ dimers.
  • Derived peptides (SIP peptides) initially showed high flexibility and low binding affinity.
  • Stapling (hydrocarbon bridge) and cyclization (disulfide bond) strategies significantly improved peptide binding affinity to the Nac1 POZ domain.

Conclusions:

  • The study elucidates the structural and energetic basis of Nac1 POZ domain dimerization.
  • Engineered peptides targeting Nac1's dimerization interface show enhanced binding affinity, offering potential for novel cancer therapeutics.
  • This work provides a foundation for developing small molecule inhibitors targeting protein-protein interactions in cancer.

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