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Updated: Sep 6, 2025

Author Spotlight: Unveiling Transmembrane Protein Family-Related Markers in Gastric Cancer and Implications for Targeted Therapies
Published on: September 15, 2023
The EEF1AKMT3/MAP2K7/TP53 axis suppresses tumor invasiveness and metastasis in gastric cancer
Yo Han Hong1, Nur Aziz2, Jae Gwang Park3
1Department of Integrative Biotechnology, Sungkyunkwan University, Suwon, 16419, Republic of Korea; Neuroregeneration and Stem Cell Programs, Institute for Cell Engineering, Johns Hopkins University School of Medicine, Baltimore, MD, United States.
Abstract:
The importance of methylation in the tumorigenic responses of nonhistone proteins, such as TP53, PTEN, RB1, AKT, and STAT3, has been emphasized in numerous studies. In parallel, the corresponding nonhistone protein methyltransferases have been acknowledged in the pathophysiology of cancer. Thus, this study aimed to explore the pathological role of a nonhistone methyltransferase in gastric cancer (GC), identify nonhistone substrate protein, and understand the underlying mechanism. Interestingly, among the 24 methyltransferases and methyltransferase family 16 (MTF16) proteins, EEF1AKMT3 (METTL21B) expression was prominently lower in GC tissues than in normal adjacent tissues and was associated with a worse prognosis. In addition, EEF1AKMT3-knockdown induced gastric tumor invasiveness and migration. Through gain and loss-of-function studies, mass spectrometry analysis, RNA-seq, and phospho-antibody array, we identified EEF1AKMT3 as a novel tumor-suppressive methyltransferase that catalyzes the monomethylation of MAP2K7 (MKK7) at K296, thereby decreasing the phosphorylation, ubiquitination, and degradation of TP53. Furthermore, EEF1AKMT3, p-MAP2K7, and TP53 protein levels were positively correlated in GC tissues. Collectively, our results delineate the tumor-suppressive function of the EEF1AKMT3/MAP2K7/TP53 signaling axis and suggest the dysregulation of the signaling axis as potential targeted therapy in GC.
Insights
EEF1AKMT3 (METTL21B) acts as a tumor suppressor in gastric cancer by regulating TP53 stability. Lower EEF1AKMT3 levels correlate with poor prognosis, suggesting its potential as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Methylation of nonhistone proteins is crucial in cancer development.
- Nonhistone protein methyltransferases are implicated in cancer pathophysiology.
- Gastric cancer (GC) requires further understanding of its molecular drivers.
Purpose of the Study:
- To investigate the role of a nonhistone methyltransferase in gastric cancer.
- To identify its nonhistone substrate protein and elucidate the mechanism.
- To explore EEF1AKMT3 (METTL21B) as a potential therapeutic target in GC.
Main Methods:
- Analysis of EEF1AKMT3 expression in GC tissues.
- Gain and loss-of-function studies.
- Mass spectrometry, RNA-seq, and phospho-antibody array.
- Correlation analysis of protein levels in GC tissues.
Main Results:
- EEF1AKMT3 (METTL21B) expression is significantly lower in GC tissues and linked to worse prognosis.
- EEF1AKMT3 knockdown promotes gastric tumor invasiveness and migration.
- EEF1AKMT3 catalyzes MAP2K7 (MKK7) monomethylation at K296, reducing TP53 degradation.
- Positive correlation observed between EEF1AKMT3, p-MAP2K7, and TP53 levels in GC.
Conclusions:
- EEF1AKMT3 functions as a tumor suppressor in gastric cancer.
- The EEF1AKMT3/MAP2K7/TP53 signaling axis plays a critical role in GC.
- Dysregulation of this axis presents a potential therapeutic strategy for GC.
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