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Do cMOAT (MRP2), other MRP homologues, and LRP play a role in MDR?
1Netherlands Cancer Institute, Division of Molecular Biology, Amsterdam, The Netherlands.
Abstract:
The discovery of the Multidrug Resistance-associated Protein (MRP or MRP1) as a GS-X pump able to transport both anionic drug conjugates and unmodified anti-cancer drugs out of the cell, has raised the question whether other members of the MRP family might contribute to drug resistance of human tumours. The most extensively studied member of this family is cMOAT, the canalicular Multispecific Organic Anion Transporter. The substrate specificity of this pump was originally defined by an inborn error in rats, lacking this protein. These rats are mildly hyperbilirubinemic, because of their inability to secrete bilirubin glucuronides into their bile. In addition, they have diminished capacity to secrete a variety of other organic anions. Absence of cMOAT in humans results in an analogous inborn error of metabolism, the Dubin-Johnson syndrome. Attempts to determine the effect of cMOAT on the sensitivity of cells to anti-cancer drugs have run into technical problems. Most cells transfected with a cMOAT cDNA construct and overproducing cMOAT seem unable to transport the protein to the cell surface and are not MDR. However, in polarized kidney cell monolayers cMOAT is correctly routed to the apical cell surface and able to transport vinblastine. Hence, overexpression of cMOAT in cancer cells could potentially lead to drug resistance. In studies of cells selected for drug resistance no correlation was found thus far between cMOAT overexpression and MDR, but there was a positive association with cisplatin resistance, raising the possibility that cMOAT might contribute to cisplatin resistance by mediating excretion of cisplatin-glutathione complexes. This remains to be verified by more direct experiments and clinical studies, however. Database searches have yielded four additional MRP family members, MRP3-6. The physiological functions of these putative transporters are not yet known and whether they can contribute to drug resistance needs to be determined. Another putative transporter found in many MDR cells not overproducing P-glycoprotein is the Lung Resistance Protein (LRP), which is the major vault protein. Scheper et al have detected LRP in many MDR cell lines and they have shown that elevated LRP values are a strong and independent predictor of unfavourable outcome for several types of drug-treated human tumours. LRP is a cytoplasmic protein and attempts to demonstrate its involvement in drug transport have failed thus far. The possibility that this protein is only an indicator of resistance caused by upregulation of other proteins, rather than a drug transporter, remains open.
Insights
Other Multidrug Resistance-associated Proteins (MRP) may cause drug resistance in human tumors. Canalicular Multispecific Organic Anion Transporter (cMOAT) may contribute to cisplatin resistance, and Lung Resistance Protein (LRP) may indicate poor outcomes.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- The discovery of Multidrug Resistance-associated Protein 1 (MRP1) as a drug efflux pump highlights the potential role of other MRP family members in human tumor drug resistance.
- The canalicular Multispecific Organic Anion Transporter (cMOAT) is a key MRP family member involved in organic anion transport, with its absence linked to Dubin-Johnson syndrome in humans.
Purpose of the Study:
- To investigate the potential contribution of cMOAT and other MRP family members to multidrug resistance (MDR) in human tumors.
- To explore the association between cMOAT overexpression and resistance to specific anti-cancer drugs, particularly cisplatin.
Main Methods:
- Transfection of cells with cMOAT cDNA to study its effect on drug sensitivity.
- Analysis of drug-resistant cell lines for cMOAT overexpression and correlation with MDR.
- Investigation of the role of Lung Resistance Protein (LRP) in multidrug-resistant cells.
Main Results:
- Overexpression of cMOAT in polarized kidney cells demonstrated its ability to transport vinblastine, suggesting potential for drug resistance.
- No direct correlation was found between cMOAT overexpression and general MDR, but a positive association with cisplatin resistance was observed, possibly due to the transport of cisplatin-glutathione complexes.
- Elevated levels of Lung Resistance Protein (LRP) were detected in many MDR cell lines and correlated with unfavorable outcomes in drug-treated human tumors, though its direct role in drug transport remains unproven.
Conclusions:
- cMOAT may contribute to cisplatin resistance in human tumors by mediating the excretion of cisplatin-glutathione conjugates.
- Further direct experiments and clinical studies are needed to confirm the role of cMOAT in cisplatin resistance.
- The physiological functions of newly identified MRP family members (MRP3-6) and their role in drug resistance require further investigation.
- LRP may serve as an indicator of drug resistance rather than a direct drug transporter, warranting further research into its mechanism and clinical significance.