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The Emerging Role of METTL3 in Lung Diseases
Yishu Dong1,2, Ying Liu1,3, David Marciano1,2
1Center of Translational Science, Florida International University, Port St. Lucie, FL 34990, USA.
Abstract:
N6-methyladenosine (m6A) represents the most abundant and tightly controlled modification within eukaryotic mRNA, critically influencing RNA metabolism and function. The m6A methyltransferase Like-3 (METTL3), responsible for the complex's catalytic function, has emerged as a central epitranscriptomic regulator governing mRNA stability, alternative splicing, nuclear export, and the efficiency of mRNA translation. Converging research shows that METTL3 is involved in the pathogenesis of numerous disorders via m6A-dependent, post-transcriptional regulation of gene programs controlling cell growth, migration, and immune pathways. Regarding pulmonary pathophysiology, METTL3-mediated m6A is tied to disease initiation and progression in conditions such as asthma, chronic obstructive pulmonary disease (COPD), idiopathic pulmonary fibrosis (IPF), lung infections, acute respiratory distress syndrome (ARDS). This review summarizes the contemporary evidence for METTL3's roles and regulatory network in diverse pulmonary pathologies. We further highlight emerging strategies for targeting METTL3 as a potential therapeutic approach, underscoring its promise as a novel epitranscriptomic target. Beyond inflammatory and fibrotic disorders, we also summarize emerging evidence linking METTL3 to lung cancer and briefly outline other respiratory conditions (e.g., ILD, bronchiectasis, and secondary pulmonary hypertension), highlighting common translational themes and remaining gaps. Further studies are required to clarify the disease-specific and context-dependent actions of METTL3 and to advance the clinical translation of m6A-based therapies.
Insights
N6-methyladenosine (m6A) modification, regulated by METTL3, impacts RNA and cell functions. METTL3 plays a key role in lung diseases like asthma, COPD, and fibrosis, offering a potential therapeutic target.
Area of Science:
- Epitranscriptomics
- Molecular Biology
- Pulmonary Medicine
Background:
- N6-methyladenosine (m6A) is a crucial mRNA modification influencing RNA metabolism.
- METTL3 is the key enzyme responsible for m6A methylation, regulating gene expression post-transcriptionally.
- METTL3 dysregulation is implicated in various diseases, including pulmonary pathologies.
Purpose of the Study:
- To review the current evidence on METTL3's role in pulmonary pathophysiology.
- To summarize the METTL3 regulatory network in lung diseases.
- To highlight therapeutic strategies targeting METTL3 for respiratory conditions.
Main Methods:
- Literature review of studies investigating METTL3 in pulmonary diseases.
- Analysis of METTL3's involvement in mRNA stability, splicing, translation, and immune pathways.
- Synthesis of evidence linking METTL3 to asthma, COPD, IPF, lung infections, ARDS, lung cancer, and other respiratory conditions.
Main Results:
- METTL3-mediated m6A is integral to the initiation and progression of diverse lung diseases.
- METTL3 influences cell growth, migration, and immune responses relevant to pulmonary pathophysiology.
- Emerging evidence connects METTL3 to lung cancer and other respiratory conditions like ILD and bronchiectasis.
Conclusions:
- METTL3 is a significant regulator in pulmonary diseases, acting as a potential therapeutic target.
- Understanding METTL3's context-dependent roles is crucial for developing effective m6A-based therapies.
- Further research is needed to advance the clinical translation of METTL3-targeting strategies for respiratory disorders.

