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Updated: Jul 1, 2025

siRNA Electroporation to Modulate Autophagy in Herpes Simplex Virus Type 1-Infected Monocyte-Derived Dendritic Cells
Published on: October 28, 2019
Lopinavir enhances anoikis by remodeling autophagy in a circRNA-dependent manner
Yaran Wu1,2, Yang Chen2,3, Xiaojing Yan4
1Department of Clinical Laboratory Medicine, Southwest Hospital, Army Medical University, Chongqing, China.
Abstract:
Macroautophagy/autophagy-mediated anoikis resistance is crucial for tumor metastasis. As a key autophagy-related protein, ATG4B has been demonstrated to be a prospective anti-tumor target. However, the existing ATG4B inhibitors are still far from clinical application, especially for tumor metastasis. In this study, we identified a novel circRNA, circSPECC1, that interacted with ATG4B. CircSPECC1 facilitated liquid-liquid phase separation of ATG4B, which boosted the ubiquitination and degradation of ATG4B in gastric cancer (GC) cells. Thus, pharmacological addition of circSPECC1 may serve as an innovative approach to suppress autophagy by targeting ATG4B. Specifically, the circSPECC1 underwent significant m6A modification in GC cells and was subsequently recognized and suppressed by the m6A reader protein ELAVL1/HuR. The activation of the ELAVL1-circSPECC1-ATG4B pathway was demonstrated to mediate anoikis resistance in GC cells. Moreover, we also verified that the above pathway was closely related to metastasis in tissues from GC patients. Furthermore, we determined that the FDA-approved compound lopinavir efficiently enhanced anoikis and prevented metastasis by eliminating repression of ELAVL1 on circSPECC1. In summary, this study provides novel insights into ATG4B-mediated autophagy and introduces a viable clinical inhibitor of autophagy, which may be beneficial for the treatment of GC with metastasis.
Insights
A novel circRNA, circSPECC1, targets ATG4B to suppress autophagy and anoikis resistance in gastric cancer. The FDA-approved drug lopinavir enhances anoikis and prevents metastasis by modulating this pathway.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Autophagy-mediated anoikis resistance is critical for tumor metastasis.
- ATG4B is a key autophagy protein and a potential anti-tumor target, but effective inhibitors for metastasis are lacking.
Purpose of the Study:
- To identify novel regulators of ATG4B in gastric cancer (GC) and explore their therapeutic potential for metastasis.
Main Methods:
- Identified circSPECC1 interaction with ATG4B.
- Investigated circSPECC1's role in ATG4B degradation via m6A modification and ELAVL1/HuR.
- Assessed the ELAVL1-circSPECC1-ATG4B pathway in GC cells and patient tissues.
- Evaluated lopinavir's effect on anoikis and metastasis.
Main Results:
- CircSPECC1 promotes ATG4B degradation, suppressing autophagy and anoikis resistance in GC cells.
- ELAVL1/HuR suppresses circSPECC1, activating the ELAVL1-circSPECC1-ATG4B pathway.
- This pathway is linked to GC metastasis in patient samples.
- Lopinavir reverses ELAVL1-mediated repression of circSPECC1, enhancing anoikis and inhibiting metastasis.
Conclusions:
- CircSPECC1 is a novel regulator of ATG4B and autophagy in GC.
- The ELAVL1-circSPECC1-ATG4B axis is a key mediator of anoikis resistance and metastasis.
- Lopinavir represents a potential therapeutic strategy for treating metastatic GC by targeting this pathway.
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