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Chemoresistance-Associated Silencing of miR-4454 Promotes Colorectal Cancer Aggression through the GNL3L and NF-κB
Thetchinamoorthy Kannathasan1, Wei-Wen Kuo2, Ming-Cheng Chen3,4
1Graduate Institute of Biomedical Sciences, China Medical University, Taichung 404, Taiwan.
Abstract:
Guanine nucleotide-binding protein-like-3-like (GNL3L) is a crucial regulator of NF-κB signaling that is aberrantly activated during diverse chemoresistance-associated cellular processes. However, the molecular mechanisms of GNL3L tumor initiation and resistant state are largely unknown. Moreover, the identification of predictive biomarkers is necessary to effectively generate therapeutic strategies for metastatic human colorectal cancer (CRC). This study aims to identify how cells acquire resistance to anticancer drugs and whether the downregulation of miR-4454 is associated with the progression of CRC. Here, we have shown that the overexpression of miR-4454 in resistant tumors is a crucial precursor for the posttranscriptional repression of GNL3L in human chemoresistant CRC progression, and we used doxycycline induced miR-4454 overexpression that significantly reduced tumor volume in a subcutaneous injection nude mice model. Together, these observations highlight that the downregulation of miR-4454 in resistant clones is prominently responsible for maintaining their resistance against anticancer drug therapy. Our study indicates that the development of miR-4454 as a microRNA-based therapeutic approach to silence GNL3L may remarkably reduce oncogenic cell survival that depends on GNL3L/NF-κB signaling, making miR-4454 a candidate for treating metastatic human CRC.
Insights
MicroRNA-4454 (miR-4454) downregulation drives chemoresistance in colorectal cancer (CRC) by increasing guanine nucleotide-binding protein-like-3-like (GNL3L). Restoring miR-4454 suppresses GNL3L, reducing tumor growth and offering a potential CRC therapy.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Guanine nucleotide-binding protein-like-3-like (GNL3L) is implicated in NF-κB signaling and chemoresistance.
- Mechanisms of GNL3L in tumor initiation and drug resistance remain unclear.
- Predictive biomarkers are needed for metastatic colorectal cancer (CRC) treatment strategies.
Purpose of the Study:
- Investigate mechanisms of anticancer drug resistance in CRC.
- Determine the association between miR-4454 downregulation and CRC progression.
- Evaluate miR-4454 as a potential therapeutic target for CRC.
Main Methods:
- Overexpression of miR-4454 in chemoresistant CRC models.
- Assessment of GNL3L posttranscriptional repression.
- In vivo studies using a subcutaneous injection nude mice model with doxycycline-induced miR-4454 overexpression.
Main Results:
- Overexpression of miR-4454 precedes GNL3L repression in chemoresistant human CRC.
- Doxycycline-induced miR-4454 overexpression significantly reduced tumor volume in mice.
- Downregulation of miR-4454 in resistant clones maintains anticancer drug resistance.
Conclusions:
- miR-4454 downregulation is a key factor in maintaining chemoresistance in CRC.
- miR-4454 acts as a tumor suppressor by repressing GNL3L.
- miR-4454 represents a potential microRNA-based therapeutic strategy for metastatic CRC by targeting the GNL3L/NF-κB pathway.
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