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The endocytic receptor protein LRP-1 modulate P-glycoprotein mediated drug resistance in MCF-7 cells
Aubery Henry1, Marine Mauperin1, Jerome Devy1
1UMR-CNRS 7369 Matrice Extracellulaire et Dynamique Cellulaire (MEDyC), UFR SEN, URCA, Reims cedex, France.
Abstract:
Multidrug resistance (MDR) is a major obstacle to successful cancer chemotherapy. A typical form of MDR is due to the overexpression of membrane transport proteins., such as Glycoprotein-P (P-gp), resulting in an increased drug efflux preventing drug cytotoxicity. P-gp is mainly localized on the plasma membrane; however, it can also be endocytosed resulting in the trafficking of P-gp in endoplasmic reticulum, Golgi, endosomes, and lysosomes. The lysosomal P-gp has been found to be capable of transporting and sequestering P-gp substrates (e.g., Doxorubicin (Dox)) into lysosomes to protect cells against cytotoxic drugs. Many translational studies have shown that low-density lipoprotein receptor-related protein-1 (LRP-1) is involved in endocytosis and regulation of signalling pathways. LRP-1 mediates the endocytosis of a diverse set of extracellular ligands that play important roles in tumor progression. Here, we investigated the involvement of LRP-1 in P-gp expression and subcellular redistribution from the cell surface to the lysosomal membrane by endocytosis and its potential implication in P-gp-mediated multidrug resistance in MCF-7 cells. Our results showed that MCF-7 resistant cells (MCF-7R) overexpressed the P-gp, LRP-1 and LAMP-1 and were 11.66-fold resistant to Dox. Our study also revealed that in MCF-7R cells, lysosomes were predominantly high density compared to sensitized cells and P-gp was localized in the plasma membrane and lysosomes. LRP-1 blockade reduced lysosomes density and level of LAMP-1 and P-gp. It also affected the subcellular distribution of P-gp. Under these conditions, we restored Dox nuclear uptake and ERK 1/2 activation thus leading to MCF-7R cell sensitization to Dox. Our data suggest that LRP-1 is able to modulate the P-gp expression and subcellular redistribution by endocytosis and to potentiate the P-gp-acquired Dox resistance.
Insights
Low-density lipoprotein receptor-related protein-1 (LRP-1) blockade sensitizes multidrug-resistant (MDR) cancer cells to chemotherapy. LRP-1 regulates P-glycoprotein (P-gp) expression and lysosomal trafficking, overcoming MDR.
Area of Science:
- Cancer research
- Molecular biology
- Cellular biology
Background:
- Multidrug resistance (MDR) is a significant challenge in cancer chemotherapy, often mediated by membrane transport proteins like P-glycoprotein (P-gp).
- P-gp, primarily on the plasma membrane, can be endocytosed, leading to its presence in lysosomes where it sequesters drugs like Doxorubicin (Dox).
- Low-density lipoprotein receptor-related protein-1 (LRP-1) is implicated in endocytosis and tumor progression, suggesting a potential role in MDR.
Purpose of the Study:
- To investigate LRP-1's role in P-gp expression and subcellular redistribution via endocytosis.
- To determine LRP-1's implication in P-gp-mediated multidrug resistance in MCF-7 cells.
Main Methods:
- Utilized MCF-7 resistant cells (MCF-7R) overexpressing P-gp, LRP-1, and LAMP-1.
- Analyzed lysosome density and P-gp localization in MCF-7R cells.
- Investigated the effects of LRP-1 blockade on lysosome density, LAMP-1 and P-gp levels, and P-gp subcellular distribution.
- Assessed Doxorubicin (Dox) nuclear uptake and ERK 1/2 activation following LRP-1 blockade.
Main Results:
- MCF-7R cells exhibited 11.66-fold resistance to Dox, with overexpression of P-gp, LRP-1, and LAMP-1.
- MCF-7R cells showed predominantly high-density lysosomes, with P-gp localized on the plasma membrane and in lysosomes.
- LRP-1 blockade reduced lysosome density, LAMP-1 and P-gp levels, and altered P-gp subcellular distribution.
- Blocking LRP-1 restored Dox nuclear uptake and ERK 1/2 activation, sensitizing MCF-7R cells to Dox.
Conclusions:
- LRP-1 modulates P-gp expression and its endocytosis-mediated redistribution to lysosomes.
- LRP-1 potentiates P-gp-acquired Doxorubicin resistance in MCF-7 cells.
- Targeting LRP-1 represents a potential strategy to overcome P-gp-mediated multidrug resistance in cancer therapy.
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