Regulated Induced Proximity Targeting Chimeras (RIPTACs): a Novel Heterobifunctional Small Molecule Therapeutic

Kanak Raina1,2, Chris D Forbes2, Rebecca Stronk2

  • 1co-corresponding authors.

Insights

Regulated Induced Proximity Targeting Chimeras (RIPTACs) are novel heterobifunctional molecules that induce cancer cell death by forming stable trimers. This approach targets intracellular proteins, expanding therapeutic options for precision oncology.

Area of Science:

  • Oncology
  • Drug Discovery
  • Molecular Biology

Background:

  • Targeting intracellular proteins for cancer therapy remains a challenge.
  • Existing therapies like ADCs cannot target intracellular proteins.
  • Proteolysis Targeting Chimeras (PROTACs) enable protein proximity induction.

Approach:

  • Developed novel heterobifunctional molecules called Regulated Induced Proximity Targeting Chimeras (RIPTACs).
  • RIPTACs form a stable ternary complex between a cancer-specific target protein and a pan-expressed essential protein.
  • This induces a cooperative protein:protein interaction (PPI) that abrogates the essential protein's function.

Key Points:

  • RIPTACs leverage differentially expressed intracellular proteins, expanding targetable space.
  • This approach can overcome non-target resistance mechanisms by targeting essential protein inactivation.
  • Demonstrated RIPTACs with covalent/non-covalent ligands targeting HaloTag7-FKBP, inducing anti-proliferative response.

Conclusions:

  • RIPTACs represent a novel therapeutic modality for cancers with selectively expressed intracellular proteins.
  • This strategy offers a new avenue for precision oncology drug discovery.
  • RIPTACs induce selective cancer cell death through targeted protein inactivation.