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Eribulin Activates the cGAS-STING Pathway via the Cytoplasmic Accumulation of Mitochondrial DNA
Charles S Fermaintt1, Leila Takahashi-Ruiz1, Huiyun Liang1
1Department of Pharmacology (C.S.F., L.T.-R., H.L., S.L.M., A.L.R.), and Mays Cancer Center (C.S.F., S.L.M., A.L.R.), University of Texas Health Science Center San Antonio, San Antonio, Texas.
Abstract:
Microtubule-targeting agents (MTAs), including both microtubule stabilizers and destabilizers are highly effective chemotherapeutic drugs used in the treatment of solid tumors and hematologic malignancies. In addition to the shared ability of all MTAs to block cell cycle progression, growing evidence shows that different agents of this class can also have mechanistically distinct effects on nonmitotic microtubule-dependent cellular processes, including cellular signaling and transport. Herein, we test the biologic hypothesis that MTAs used in the treatment of triple-negative breast cancer (TNBC) can differentially affect innate immune signaling pathways independent of their antimitotic effects. Our data demonstrate that the microtubule destabilizer eribulin, but not the microtubule stabilizer paclitaxel, induces cGAS-STING-dependent expression of interferon-β in both myeloid and TNBC cells. Activation of the cGAS-STING pathway by eribulin was further found to be mediated by the accumulation of cytoplasmic mitochondrial DNA. Together, these findings provide mechanistic insight into how eribulin can induce innate immune signaling independent of its antimitotic or cytotoxic effects. SIGNIFICANCE STATEMENT: Microtubule-targeting agents (MTAs) are often used in the treatment of breast cancer and have been used in combination with immune checkpoint inhibitors to improve efficacy. Although all clinically approved MTAs share an antimitotic mechanism of action, their distinct effects on interphase microtubules can promote differential downstream signaling consequences. This work shows that the microtubule destabilizer eribulin, but not the microtubule stabilizer paclitaxel, activates the cGAS-STING innate immune signaling pathway through the accumulation of mitochondrial DNA in the cytoplasm.
Insights
The microtubule destabilizer eribulin, but not paclitaxel, activates innate immune signaling in triple-negative breast cancer cells by inducing interferon-β via the cGAS-STING pathway and mitochondrial DNA accumulation.
Area of Science:
- Oncology
- Immunology
- Cell Biology
Background:
- Microtubule-targeting agents (MTAs) are crucial chemotherapeutics for solid tumors and hematologic malignancies.
- Beyond cell cycle arrest, MTAs exhibit distinct effects on nonmitotic cellular processes, including signaling and transport.
- Investigating differential immune signaling effects of MTAs in triple-negative breast cancer (TNBC) is critical for combination therapies.
Purpose of the Study:
- To test the hypothesis that MTAs differentially impact innate immune signaling pathways in TNBC, independent of their antimitotic effects.
- To elucidate the specific mechanisms by which eribulin and paclitaxel affect immune signaling in TNBC cells.
- To determine if MTA-induced immune activation can be linked to cytoplasmic mitochondrial DNA accumulation.
Main Methods:
- Comparative analysis of eribulin (microtubule destabilizer) and paclitaxel (microtubule stabilizer) in myeloid and TNBC cell lines.
- Assessment of cGAS-STING pathway activation and interferon-β expression.
- Investigation of mitochondrial DNA localization and cellular signaling pathways.
Main Results:
- Eribulin, unlike paclitaxel, induced cGAS-STING-dependent interferon-β expression in both myeloid and TNBC cells.
- Activation of the cGAS-STING pathway by eribulin was mediated by the accumulation of cytoplasmic mitochondrial DNA.
- These effects were observed independently of the antimitotic or cytotoxic properties of eribulin.
Conclusions:
- Eribulin activates innate immune signaling through the cGAS-STING pathway, distinct from its antimitotic effects.
- Mitochondrial DNA release into the cytoplasm is a key mechanism for eribulin-induced immune activation.
- Findings provide mechanistic insights into eribulin's immunomodulatory potential in TNBC treatment, especially in combination therapies.
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