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NSUN2 Promotes Cancer Immune Evasion via Its Moonlighting Function Acting on Metabolic Reprogramming
Baoxiang Chen1,2,3,4,5, Yanrong Deng1,2,3,4, Xiang Zhai1,2,3,4
1Hubei Key Laboratory of Intestinal and Colorectal Diseases, Zhongnan Hospital of Wuhan University, Wuhan, Hubei, P. R. China.
Abstract:
Background: Although cancer immunotherapies have revolutionized cancer treatment, a substantial proportion of patients remain unresponsive. Elucidating the molecular mechanisms underlying tumor immune evasion and identifying key regulators are essential for improving immunotherapy efficacy. NOP2/Sun RNA methyltransferase 2 (NSUN2) exhibits widespread mutations across pan-cancer cohorts. This study aimed to delineate the noncanonical functions of NSUN2 in cancer immune modulation and explore its potential as a therapeutic target for cancer immunotherapy. Methods: Multiple cancer cells expressing catalytically inactive NSUN2 mutants were generated and subjected to in vitro functional assays and in vivo studies in immunocompetent mouse models to evaluate their effects on tumor growth and antitumor immunity. Integrative multi-omics analyses, including transcriptomics, metabolomics, and mass spectrometry, were performed to elucidate the molecular mechanisms underlying NSUN2-mediated immune evasion. A proteolysis-targeting chimera (PROTAC) system was developed to achieve targeted degradation of NSUN2, and the clinical relevance of NSUN2 expression in predicting immunotherapy responses was assessed using institutional and public datasets. Results: The enzymatically inactive NSUN2 mutant had minimal effects on tumor cell proliferation in vitro but markedly promoted tumor immune evasion in vivo. Multi-omics analyses revealed that NSUN2 induced metabolic reprogramming and elevated succinate levels, which suppressed cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) signaling in tumor-associated macrophages (TAMs), thereby remodeling the tumor immune microenvironment and promoting M2-like TAM infiltration. Mechanistically, NSUN2 interacted with GATA-binding protein 3 (GATA3) through its methyltransferase domain, relieving GATA3-mediated transcriptional repression of succinate-CoA ligase GDP/ADP-forming subunit α and β genes (SUCLG1 and SUCLG2), leading to succinate accumulation. A newly developed NSUN2-targeting PROTAC demonstrated therapeutic efficacy and safety in combination with cancer immunotherapy. Clinically, low NSUN2 expression was associated with improved immunotherapy responses and survival. Conclusions: Taken together, these findings revealed a noncanonical role of NSUN2 in reshaping the tumor immunosuppressive microenvironment, positioning NSUN2 as a pivotal repressor of cancer immunity and a promising immunotherapeutic target.
Insights
The study reveals that NSUN2 promotes cancer immune evasion by altering tumor metabolism and suppressing anti-tumor immunity. Targeting NSUN2 with PROTACs shows therapeutic potential for improving cancer immunotherapy responses.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Cancer immunotherapies are effective but many patients do not respond.
- Understanding tumor immune evasion mechanisms is crucial for enhancing immunotherapy.
- NOP2/Sun RNA methyltransferase 2 (NSUN2) is frequently mutated in cancers, suggesting a role in tumor progression.
Purpose of the Study:
- To investigate the noncanonical functions of NSUN2 in cancer immune modulation.
- To explore NSUN2 as a potential therapeutic target for cancer immunotherapy.
Main Methods:
- Generated catalytically inactive NSUN2 mutants for in vitro and in vivo studies.
- Conducted integrative multi-omics analyses (transcriptomics, metabolomics, mass spectrometry).
- Developed and tested an NSUN2-targeting proteolysis-targeting chimera (PROTAC).
- Assessed NSUN2 expression in clinical datasets for immunotherapy response prediction.
Main Results:
- Inactive NSUN2 mutants promoted tumor immune evasion in vivo, not proliferation.
- NSUN2 induced metabolic reprogramming, increasing succinate levels and suppressing cGAS-STING signaling in macrophages.
- NSUN2 interacted with GATA3, upregulating succinate synthesis genes (SUCLG1, SUCLG2).
- NSUN2-targeting PROTAC showed efficacy with immunotherapy; low NSUN2 correlated with better immunotherapy response and survival.
Conclusions:
- NSUN2 plays a noncanonical role in creating an immunosuppressive tumor microenvironment.
- NSUN2 acts as a key repressor of anti-cancer immunity.
- NSUN2 is a promising therapeutic target for enhancing cancer immunotherapy.
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