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A Novel Modulator of Resistance for Oxaliplatin-Based Therapy for Colorectal Cancer: The ESCRT Family Member VPS4A
Noha M Abdelrazik1,2, Anjana Patel1, Andrew Conn3
1Institute of Cancer Therapeutics, University of Bradford, Bradford BD7 1DP, UK.
Abstract:
Drug resistance is still one of the main challenges for the treatment of colorectal cancer (CRC). Whilst some resistance mechanisms are well known, from the static therapy success rate, clearly, still much is undiscovered. Intracellular transport mechanisms have attracted attention as having a possible role in drug resistance, and here, the Endosomal Sorting Complex Required for Transport (ESCRT) protein family is studied as a source of drug resistance modulation using human CRC cell lines and clinical material. From an initial screening of ESCRT proteins in a panel of 10 CRC wild-type cell lines using immunoblotting, Vacuolar Protein Sorting-Associated Protein A4 (VPS4A) was identified as being consistently highly expressed, and it was selected for further investigation. Immunohistopathological evaluation in a small panel of CRC patient samples demonstrated high expression in the tumor epithelium compared to normal intestinal epithelium. The knockdown of VPS4A resulted in enhanced sensitivity of cells to oxaliplatin, and it was subsequently seen that oxaliplatin-resistant sublines had significantly higher VPS4A expression than their wild-type variants. In addition, it was demonstrated that a small molecule inhibitor of VPS4A, aloperine, could interact synergistically with oxaliplatin to enhance its sensitivity in an oxaliplatin-resistant cell line. We hypothesize from initial RNA sequencing analysis that the mechanism of action of VPS4A modulation is through depleting levels of the drug efflux transporter MRP2 in the cell, preventing oxaliplatin egress and increasing cell exposure to the drug. The evidence presented here thus indicates that ESCRT machinery, specifically VPS4A, may act as a modulator of oxaliplatin resistance in CRC.
Insights
Vacuolar Protein Sorting-Associated Protein A4 (VPS4A) is highly expressed in colorectal cancer (CRC) and contributes to oxaliplatin resistance. Inhibiting VPS4A enhances drug sensitivity, offering a new therapeutic target for CRC treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Drug resistance remains a significant hurdle in colorectal cancer (CRC) treatment.
- Intracellular transport mechanisms are increasingly recognized for their role in modulating drug resistance.
- The Endosomal Sorting Complex Required for Transport (ESCRT) machinery is a potential target for overcoming resistance.
Purpose of the Study:
- To investigate the role of ESCRT proteins, specifically Vacuolar Protein Sorting-Associated Protein A4 (VPS4A), in mediating drug resistance in colorectal cancer.
- To evaluate VPS4A as a potential therapeutic target for enhancing sensitivity to chemotherapy in CRC.
Main Methods:
- Screening of ESCRT proteins in human CRC cell lines using immunoblotting.
- Immunohistopathological evaluation of VPS4A expression in CRC patient samples.
- VPS4A knockdown experiments to assess sensitivity to oxaliplatin.
- Assessment of synergistic effects between VPS4A inhibitor (aloperine) and oxaliplatin.
- RNA sequencing analysis to elucidate the mechanism of action.
Main Results:
- VPS4A was consistently highly expressed in CRC cell lines and tumor tissues compared to normal epithelium.
- VPS4A knockdown increased sensitivity to oxaliplatin, while resistant cell lines showed higher VPS4A expression.
- The VPS4A inhibitor aloperine demonstrated synergistic effects with oxaliplatin in resistant cells.
- Preliminary data suggest VPS4A modulates resistance by affecting the drug efflux transporter MRP2.
Conclusions:
- VPS4A plays a significant role in oxaliplatin resistance in colorectal cancer.
- Targeting VPS4A, potentially with inhibitors like aloperine, could be a viable strategy to overcome drug resistance in CRC.
- Further research into the ESCRT pathway's role in drug resistance is warranted.
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