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Updated: Aug 23, 2026

Testing Targeted Therapies in Cancer using Structural DNA Alteration Analysis and Patient-Derived Xenografts
Published on: July 25, 2020
Mrp4 confers resistance to topotecan and protects the brain from chemotherapy
Markos Leggas1, Masashi Adachi, George L Scheffer
1Department of Pharmaceutical Sciences, St. Jude Children's Research Hospital, 332 N. Lauderdale, Memphis, TN 38105-2794, USA.
Abstract:
The role of the multidrug resistance protein MRP4/ABCC4 in vivo remains undefined. To explore this role, we generated Mrp4-deficient mice. Unexpectedly, these mice showed enhanced accumulation of the anticancer agent topotecan in brain tissue and cerebrospinal fluid (CSF). Further studies demonstrated that topotecan was an Mrp4 substrate and that cells overexpressing Mrp4 were resistant to its cytotoxic effects. We then used new antibodies to discover that Mrp4 is unique among the anionic ATP-dependent transporters in its dual localization at the basolateral membrane of the choroid plexus epithelium and in the apical membrane of the endothelial cells of the brain capillaries. Microdialysis sampling of ventricular CSF demonstrated that localization of Mrp4 at the choroid epithelium is integral to its function in limiting drug penetration into the CSF. The topotecan resistance of cells overexpressing Mrp4 and the polarized expression of Mrp4 in the choroid plexus and brain capillary endothelial cells indicate that Mrp4 has a dual role in protecting the brain from cytotoxins and suggest that the therapeutic efficacy of central nervous system-directed drugs that are Mrp4 substrates may be improved by developing Mrp4 inhibitors.
Insights
Multidrug resistance protein MRP4/ABCC4 limits anticancer drug topotecan entry into brain and cerebrospinal fluid. Inhibiting MRP4 may enhance brain-directed cancer therapies.
Area of Science:
- Pharmacology
- Neuroscience
- Molecular Biology
Background:
- The in vivo role of the multidrug resistance-associated protein MRP4/ABCC4 is not well understood.
- MRP4/ABCC4 is an efflux transporter involved in drug disposition.
Purpose of the Study:
- To investigate the in vivo function of MRP4/ABCC4.
- To determine the role of MRP4/ABCC4 in the brain penetration of drugs, specifically the anticancer agent topotecan.
Main Methods:
- Generation and analysis of Mrp4-deficient mice.
- In vitro studies using cells overexpressing Mrp4.
- Detection of Mrp4 localization using novel antibodies.
- Microdialysis sampling of cerebrospinal fluid (CSF).
Main Results:
- Mrp4-deficient mice exhibited increased topotecan accumulation in brain and CSF.
- Topotecan was identified as a substrate for Mrp4, conferring resistance to its cytotoxic effects.
- Mrp4 displayed a unique dual localization at the choroid plexus epithelium and brain capillary endothelial cells.
- Choroid plexus localization of Mrp4 was crucial for limiting drug entry into the CSF.
Conclusions:
- MRP4/ABCC4 plays a dual role in protecting the brain from cytotoxins.
- Targeting MRP4/ABCC4 could potentially improve the efficacy of CNS-directed drugs that are its substrates.