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Updated: Feb 11, 2026

Author Spotlight: Unveiling Transmembrane Protein Family-Related Markers in Gastric Cancer and Implications for Targeted Therapies
Published on: September 15, 2023
Truncation- and motif-based pan-cancer analysis reveals tumor-suppressing kinases
Andrew M Hudson1,2, Natalie L Stephenson1,3, Cynthia Li1
1Signalling Networks in Cancer Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester M20 4BX, UK.
Abstract:
A major challenge in cancer genomics is identifying "driver" mutations from the many neutral "passenger" mutations within a given tumor. To identify driver mutations that would otherwise be lost within mutational noise, we filtered genomic data by motifs that are critical for kinase activity. In the first step of our screen, we used data from the Cancer Cell Line Encyclopedia and The Cancer Genome Atlas to identify kinases with truncation mutations occurring within or before the kinase domain. The top 30 tumor-suppressing kinases were aligned, and hotspots for loss-of-function (LOF) mutations were identified on the basis of amino acid conservation and mutational frequency. The functional consequences of new LOF mutations were biochemically validated, and the top 15 hotspot LOF residues were used in a pan-cancer analysis to define the tumor-suppressing kinome. A ranked list revealed MAP2K7, an essential mediator of the c-Jun N-terminal kinase (JNK) pathway, as a candidate tumor suppressor in gastric cancer, despite its mutational frequency falling within the mutational noise for this cancer type. The majority of mutations in MAP2K7 abolished its catalytic activity, and reactivation of the JNK pathway in gastric cancer cells harboring LOF mutations in MAP2K7 or the downstream kinase JNK suppressed clonogenicity and growth in soft agar, demonstrating the functional relevance of inactivating the JNK pathway in gastric cancer. Together, our data highlight a broadly applicable strategy to identify functional cancer driver mutations and define the JNK pathway as tumor-suppressive in gastric cancer.
Insights
Identifying cancer driver mutations is challenging. This study developed a kinase-focused method to find functional mutations, revealing the JNK pathway as tumor-suppressive in gastric cancer.
Area of Science:
- Cancer Genomics
- Molecular Biology
- Biochemistry
Background:
- Distinguishing driver mutations from passenger mutations in cancer genomics is a significant hurdle.
- Kinase activity motifs are crucial for identifying functionally relevant mutations lost in mutational noise.
Purpose of the Study:
- To develop and apply a strategy for identifying functional cancer driver mutations, particularly loss-of-function mutations in tumor-suppressing kinases.
- To define the tumor-suppressing kinome and investigate the role of the JNK pathway in gastric cancer.
Main Methods:
- Filtered genomic data from Cancer Cell Line Encyclopedia and The Cancer Genome Atlas using kinase activity motifs.
- Identified kinases with truncation mutations and hotspots for loss-of-function (LOF) mutations.
- Biochemically validated functional consequences of LOF mutations and performed pan-cancer analysis.
Main Results:
- Identified MAP2K7, a mediator of the c-Jun N-terminal kinase (JNK) pathway, as a candidate tumor suppressor in gastric cancer.
- Found that most MAP2K7 mutations abolished catalytic activity.
- Reactivation of the JNK pathway suppressed clonogenicity and growth in gastric cancer cells with MAP2K7 or JNK LOF mutations.
Conclusions:
- The study presents a broadly applicable strategy for identifying functional cancer driver mutations.
- The JNK pathway is demonstrated to be tumor-suppressive in gastric cancer.
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