Profiling oncogenic KRAS mutant drugs with a cell-based Lumit p-ERK immunoassay

Matthew Swiatnicki1, Laurie Engel1, Riva Shrestha1

  • 1Promega Corporation, R&D Department, Madison, WI, USA.

Insights

Developing novel KRAS inhibitors is crucial for cancer treatment. A new Lumit immunoassay enables rapid screening of mutant KRAS inhibitors, identifying potent compounds like MRTX-1133 and PROTAC LC-2 for cancer therapy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biotechnology

Background:

  • KRAS mutations are prevalent in cancer, posing challenges for targeted therapy.
  • Traditional immunoassays for RAS signaling are laborious and not high-throughput.
  • The development of selective KRAS inhibitors is an active area of cancer research.

Purpose of the Study:

  • To develop a rapid, homogeneous assay for analyzing RAS signaling pathway activation and inhibition.
  • To utilize Lumit immunoassay technology for screening and characterizing novel KRAS inhibitors.
  • To identify and rank the potency of allele-specific inhibitors against various KRAS mutations.

Main Methods:

  • Application of Lumit immunoassay technology to detect phosphorylated ERK (pERK) as a readout for RAS signaling.
  • Testing the assay's performance in cell lines with different activating KRAS mutations.
  • Evaluating the potency and selectivity of known KRAS inhibitors, including MRTX-1133 and PROTAC LC-2.

Main Results:

  • The Lumit pERK immunoassay successfully measured RAS signaling pathway activation and inhibition.
  • MRTX-1133 demonstrated high potency against KRAS G12D signaling, with significantly less activity against G12C and G12V mutants.
  • PROTAC compound LC-2 effectively reduced RAS signaling via KRAS G12C degradation.

Conclusions:

  • Lumit immunoassays offer a streamlined, bioluminescent platform for analyzing RAS-dependent signaling.
  • This technology facilitates the identification and characterization of much-needed KRAS inhibitors.
  • The assay design is adaptable for studying other signaling pathways.

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