Related Experiment Video
Updated: Sep 30, 2025

A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells
Published on: July 3, 2013
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.
Abstract:
KRAS is one of the most heavily mutated oncogenes in cancer and targeting mutant KRAS with drugs has proven difficult. However, recent FDA approval of the KRAS G12C selective inhibitor sotorasib (AMG-510), has breathed new life into the drive to develop mutant KRAS inhibitors. In an effort to study RAS inhibitors in cells and identify new compounds that inhibit Ras signaling, western blotting and ELISA assays are commonly used. These traditional immunoassays are tedious, require multiple washing steps, and are not easily adaptable to a high throughput screening (HTS) format. To overcome these limitations, we applied Lumit immunoassay technology to analyze RAS signaling pathway activation and inhibition through the detection of phosphorylated ERK. The assay we developed was used to rank order potencies of allele specific inhibitors within cell lines harboring various activating KRAS mutations. An inhibition profile was obtained indicating various potencies and selectivity of the inhibitors, including MRTX-1133, which was shown to be highly potent against KRAS G12D signaling. MRTX-1133 had approximately 40 and 400 times less inhibitory potency against G12C and G12V mutant KRAS, respectively, while no inhibition of WT KRAS was observed. The potency of PROTAC compound LC-2 targeting selective degradation of KRAS G12C was also tested using the Lumit pERK immunoassay, and a maximal decrease in RAS signaling was achieved. Lumit immunoassays provide a rapid, homogeneous platform for detecting signaling pathway activation and inhibition. Our results demonstrate that this bioluminescent technology can streamline the analysis of signaling pathways of interest, such as RAS-dependent pathways, and be used to identify much needed inhibitors. The results further imply that similar assay designs could be applied to other signaling pathway nodes.
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.

