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ALDH2 inhibits head and neck tumorigenesis through RAS signaling suppression, transactivation of TGM2, and synergy
Uyanahewa Gamage Shashini Janesha1,2, Chang-Ta Chiu3, Ming-Hsien Tsai4,5,6,7
1Institute of Biomedical Sciences, College of Medicine, National Sun Yat-sen University, Kaohsiung, 80424, Taiwan.
Abstract:
Head and neck squamous cell carcinoma (HNSC) ranks among the most common malignancies globally, with ALDH2 mutations linked to elevated disease risk. This study delineates the tumor-suppressive functions of ALDH2, examining its enzymatic activity, post-translational modifications, potentially transcriptional regulation, and protein–protein interactions. In an oral squamous cell carcinoma (OSCC) cohort, high ALDH2 immunostaining independently correlated with improved clinical outcomes. Functional assays across four HNSC-derived cell lines revealed that ALDH2 inhibits anchorage-independent growth, migration, invasion, and endothelial tube formation effects mediated by suppression of the HRAS–AKT–NFκB signaling axis. Mutations at E504 and phosphorylation-deficient variants at T261 and S488 impaired ALDH2 enzymatic function and abolished its tumor-suppressive capacity by reactivating oncogenic signaling. Mechanistically, ALDH2-mediated inhibition of AKT1 reduced NR4A1 phosphorylation, thereby enhancing TGM2 transcription and translation and promoting apoptosis. Notably, ALDH2 directly interacts with ALDH6A1, and this association, independent of catalytic activity, synergistically amplifies anti-tumor signaling. Collectively, these findings identify ALDH2 as a key tumor suppressor in HNSC, including OSCC, and highlight the therapeutic potential of activating ALDH2, NR4A1, and TGM2. Moreover, stabilization of the ALDH2–ALDH6A1 complex may offer a viable strategy for disease prevention and treatment, even in the context of frequent ALDH2 mutations.
Insights
Aldehyde dehydrogenase 2 (ALDH2) acts as a tumor suppressor in head and neck squamous cell carcinoma (HNSC). Activating ALDH2 and its interacting partners shows therapeutic potential for HNSC and oral squamous cell carcinoma (OSCC).
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Head and neck squamous cell carcinoma (HNSC) is a prevalent global malignancy.
- Aldehyde dehydrogenase 2 (ALDH2) mutations are associated with increased HNSC risk.
Purpose of the Study:
- To investigate the tumor-suppressive functions of ALDH2 in HNSC.
- To explore ALDH2's enzymatic activity, post-translational modifications, transcriptional regulation, and protein interactions.
- To assess the therapeutic potential of targeting ALDH2 and related pathways.
Main Methods:
- Immunohistochemistry in an oral squamous cell carcinoma (OSCC) cohort.
- Functional assays in HNSC cell lines.
- Analysis of signaling pathways (HRAS-AKT-NFκB, AKT1, NR4A1, TGM2).
- Investigation of ALDH2-ALDH6A1 protein interactions.
Main Results:
- High ALDH2 expression correlated with better clinical outcomes in OSCC.
- ALDH2 suppressed anchorage-independent growth, migration, invasion, and angiogenesis by inhibiting the HRAS-AKT-NFκB axis.
- Specific ALDH2 mutations and phosphorylation variants abolished tumor suppression.
- ALDH2 inhibited AKT1, leading to NR4A1 dephosphorylation, enhanced TGM2 expression, and apoptosis.
- ALDH2 directly interacted with ALDH6A1, amplifying anti-tumor signaling.
Conclusions:
- ALDH2 is a critical tumor suppressor in HNSC and OSCC.
- Therapeutic strategies targeting ALDH2, NR4A1, and TGM2 activation are promising.
- Stabilizing the ALDH2-ALDH6A1 complex offers a potential treatment and prevention approach, even with ALDH2 mutations.
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