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The TRIM3/TLR3 axis overrides IFN-β feedback inhibition to suppress NSCLC progression
Jianyu Xu1, Qianfang Hu1, Ying Zhu1
1Department of Pharmacy, Medical Science and Technology Innovation Center, The Affiliated Suzhou Hospital of Nanjing Medical University, Suzhou Municipal Hospital, Gusu School of Nanjing Medical University, Suzhou, China.
Abstract:
Interferon-beta (IFN-β) has potent antitumor activity, but its clinical therapeutic potential is undermined by intrinsic negative feedback loops that suppress IFN-β production. However, the feedback mechanisms regulating IFN-β homeostasis in non-small cell lung cancer (NSCLC) remain unclear. We found that tripartite motif containing 3 (TRIM3) promotes the transcription and mRNA expression of IFNB1. Conversely, excessive IFN-β inhibits expression of TRIM3, creating their reciprocal feedback loop. Mass spectrometry revealed that toll-like receptor 3 (TLR3), a key sensor that triggers IFN-β production, is the interacting partner of TRIM3. Following the elucidation of the interactive mode between TRIM3 and TLR3, we found that activation of the TRIM3/TLR3 axis induced IFN-β secretion and overrode the feedback inhibition. Sustained IFN-β secretion subsequently inhibits NSCLC cell proliferation and reprograms the tumor microenvironment by increasing the infiltration levels of CD4+ T cells, M1 macrophages and NK cells. Our findings revealed a reciprocal negative feedback loop in the regulation of IFN-β signaling, highlighting the role of the TRIM3/TLR3 axis in the suppression of NSCLC progression and offering a promising strategy to suppress tumor growth and enhance immunotherapy efficacy in NSCLC.
Insights
Tripartite motif containing 3 (TRIM3) and toll-like receptor 3 (TLR3) activate interferon-beta (IFN-β) production, overcoming feedback inhibition in non-small cell lung cancer (NSCLC). This TRIM3/TLR3 axis suppresses NSCLC progression and enhances immunotherapy.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Interferon-beta (IFN-β) exhibits significant antitumor properties, but its therapeutic application in non-small cell lung cancer (NSCLC) is limited by negative feedback mechanisms that restrict IFN-β production.
- The precise feedback loops governing IFN-β homeostasis within the NSCLC tumor microenvironment are not fully understood.
Purpose of the Study:
- To elucidate the regulatory mechanisms of IFN-β homeostasis in NSCLC.
- To identify key molecular players involved in IFN-β feedback loops.
- To explore the therapeutic potential of targeting these mechanisms for NSCLC treatment.
Main Methods:
- Investigated the role of tripartite motif containing 3 (TRIM3) in IFNB1 gene transcription and expression.
- Utilized mass spectrometry to identify interacting partners of TRIM3, including toll-like receptor 3 (TLR3).
- Analyzed the functional consequences of TRIM3/TLR3 axis activation on IFN-β secretion and NSCLC progression.
Main Results:
- TRIM3 was found to promote IFN-β transcription and expression, while excessive IFN-β reciprocally inhibited TRIM3 expression, establishing a negative feedback loop.
- TRIM3 interacts with TLR3, a key sensor for IFN-β induction.
- Activation of the TRIM3/TLR3 axis successfully induced IFN-β secretion, bypassed feedback inhibition, suppressed NSCLC cell proliferation, and enhanced anti-tumor immune cell infiltration (CD4+ T cells, M1 macrophages, NK cells).
Conclusions:
- A reciprocal negative feedback loop regulating IFN-β signaling in NSCLC was identified, involving TRIM3 and IFN-β.
- The TRIM3/TLR3 axis plays a critical role in suppressing NSCLC progression by sustaining IFN-β secretion.
- Targeting the TRIM3/TLR3 axis represents a promising therapeutic strategy to inhibit NSCLC tumor growth and improve immunotherapy outcomes.
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