Related Experiment Video
Updated: Dec 25, 2025

A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells
Published on: July 3, 2013
Qualitative Ras pathway signature for cetuximab therapy reveals resistant mechanism in colorectal cancer
Kai Song1, Haibo Lu2, Liangliang Jin1
1Department of Systems Biology, College of Bioinformatics Science and Technology, Harbin Medical University, China.
Abstract:
Cetuximab therapy, which heavily relies on the activation of Ras pathway, has been used in KRAS, NRAS, BRAF, and PIK3CA wild-type colorectal cancer (CRC) (Ras-normal). However, the response rate only reached 60%, due to false-negative mutation detection and mutation-like transcriptome features in wild-type patients. Herein, by integrating RNA-seq, microarray, and mutation data, we developed a Ras pathway signature by characterizing KRAS/NRAS/BRAF/PIK3CA mutations to identify the hidden nonresponders from the Ras-normal patients by mutation detection. Using public and in-house data of CRC patients treated with cetuximab, discovery of the signature could identify cetuximab-resistant samples from the Ras-normal samples. Cetuximab resistance-related genes, such as PTEN, were significantly and frequently mutated in the identified Ras-activated samples, whereas two cetuximab sensitivity-related genes, APC and TP53, showed comutation and significantly higher mutation frequencies in the remaining Ras-normal samples. Furthermore, all the NF1- and BCL2L1-mutated samples were identified as Ras-activated from the Ras-normal samples by the Ras pathway signature with significantly under-regulated expression. Genes co-expressed with the two genes were both involved in Ras signaling pathway, the out-of-control of which could be attributed by the genes' loss-of-function mutations. To improve the treatment of cetuximab in CRC, NF1 and BCL2L1 could be used as complementary detection technique to those applied in clinical. In conclusion, the proposed Ras pathway signature could identify the hidden CRC patients resistant to cetuximab therapy and help to reveal resistance mechanisms.
Insights
A new Ras pathway signature identifies hidden nonresponders to cetuximab therapy in colorectal cancer (CRC). This signature improves detection of cetuximab resistance, aiding personalized treatment strategies for CRC patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cetuximab is used for Ras-normal colorectal cancer (CRC), but response rates are limited (60%).
- False-negative mutation detection and transcriptome features contribute to non-response in wild-type patients.
- Identifying nonresponders is crucial for optimizing cetuximab treatment efficacy.
Purpose of the Study:
- To develop a Ras pathway signature for identifying hidden cetuximab nonresponders in Ras-normal CRC.
- To characterize mutations and gene expression patterns associated with cetuximab resistance and sensitivity.
- To explore novel biomarkers for improving cetuximab treatment in CRC.
Main Methods:
- Integrated analysis of RNA-seq, microarray, and mutation data.
- Development of a Ras pathway signature based on KRAS/NRAS/BRAF/PIK3CA mutations.
- Validation of the signature using public and in-house CRC patient data.
Main Results:
- The Ras pathway signature successfully identified cetuximab-resistant samples among Ras-normal CRC patients.
- PTEN mutations were frequent in identified Ras-activated samples, while APC and TP53 mutations were linked to sensitivity.
- NF1 and BCL2L1 mutations identified Ras-activated samples with under-regulated expression, implicating loss-of-function in resistance.
Conclusions:
- The proposed Ras pathway signature can identify hidden CRC patients resistant to cetuximab.
- NF1 and BCL2L1 mutations serve as potential complementary biomarkers for cetuximab resistance detection in CRC.
- This approach aids in understanding cetuximab resistance mechanisms and improving patient treatment outcomes.
More Related Videos
Related Concept Videos
The Ras Gene
Ras is a...
Treatment Resistant Cancers

