Exploring switch II pocket conformation of KRAS(G12D) with mutant-selective monobody inhibitors

Padma Akkapeddi1, Takamitsu Hattori1,2, Imran Khan3,4

  • 1Laura and Isaac Perlmutter Cancer Center, New York University Langone Health, New York, NY 10016.

Insights

New synthetic binding proteins, called monobodies, selectively target the KRAS(G12D) cancer mutation. These monobodies inhibit KRAS(G12D) signaling and tumor growth, offering a promising avenue for cancer therapy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Protein Engineering

Background:

  • The KRAS(G12D) mutation is a frequent driver in cancers, particularly pancreatic cancer.
  • Targeting specific KRAS mutations remains a challenge in cancer therapy.

Purpose of the Study:

  • To develop novel, highly selective inhibitors for the KRAS(G12D) oncoprotein.
  • To characterize the binding mechanism and structural basis of KRAS(G12D) inhibition.

Main Methods:

  • Development of KRAS(G12D)-selective monobodies (synthetic binding proteins).
  • Crystallographic studies to determine inhibitor-target interactions.
  • Structure-guided affinity maturation and deep mutational scanning.
  • In vitro and cellular assays to assess inhibition of signaling and tumorigenesis.

Main Results:

  • Monobodies demonstrated high selectivity for KRAS(G12D) over wild-type KRAS and other RAS isoforms.
  • Structural analysis revealed unique binding interactions within the S-II pocket, including direct recognition of Asp12.
  • Affinity maturation yielded monobodies with nanomolar binding affinities (KD).
  • Genetically encoded monobodies inhibited KRAS(G12D)-driven signaling and tumor growth in cellular models.

Conclusions:

  • Monobodies represent a promising class of KRAS(G12D)-selective inhibitors.
  • The S-II pocket's plasticity can be exploited for designing next-generation cancer therapeutics.
  • These findings provide a foundation for developing targeted therapies against KRAS-mutated cancers.