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Mrp1 multidrug resistance-associated protein and P-glycoprotein expression in rat brain microvessel endothelial cells
A Regina1, A Koman, M Piciotti
1INSERM U26, Unité de Neuro-Pharmaco-Nutrition, Hôpital F. Widal, Paris, France.
Abstract:
Two membrane glycoproteins acting as energy-dependent efflux pumps, mdr-encoded P-glycoprotein (P-gp) and the more recently described multidrug resistance-associated protein (MRP), are known to confer cellular resistance to many cytotoxic hydrophobic drugs. In the brain, P-gp has been shown to be expressed specifically in the capillary endothelial cells forming the blood-brain barrier, but localization of MRP has not been well characterized yet. Using RT-PCR and immunoblot analysis, we have compared the expression of P-gp and Mrp1 in homogenates, isolated capillaries, primary cultured endothelial cells, and RBE4 immortalized endothelial cells from rat brain. Whereas the mdr1a P-gp-encoding mRNA was specifically detected in brain microvessels and mdr1b mRNA in brain parenchyma, mrp1 mRNA was present both in microvessels and in parenchyma. However, Mrp1 was weakly expressed in microvessels. Mrp1 expression was higher in brain parenchyma, as well as in primary cultured brain endothelial cells and in immortalized RBE4 cells. This Mrp1 overexpression in cultured brain endothelial cells was less pronounced when the cells were cocultured with astrocytes. A low Mrp activity could be demonstrated in the endothelial cell primary monocultures, because the intracellular [3H]vincristine accumulation was increased by several MRP modulators. No Mrp activity was found in the cocultures or in the RBE4 cells. We suggest that in rat brain, Mrp1, unlike P-gp, is not predominantly expressed in the blood-brain barrier endothelial cells and that Mrp1 and the mdr1b P-gp isoform may be present in other cerebral cells.
Insights
Multidrug resistance-associated protein 1 (MRP1) is not primarily found in rat brain
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- P-glycoprotein (P-gp) and multidrug resistance-associated protein (MRP) are efflux pumps conferring drug resistance.
- P-gp is localized to brain capillary endothelial cells of the blood-brain barrier.
- MRP localization in the brain, particularly MRP1, is not well understood.
Purpose of the Study:
- To compare the expression and localization of P-gp and MRP1 in rat brain microvessels and parenchyma.
- To investigate the functional activity of MRP1 in brain endothelial cells.
Main Methods:
- RT-PCR and immunoblot analysis were used to detect P-gp and MRP1 mRNA and protein.
- Expression was analyzed in brain homogenates, isolated capillaries, primary endothelial cell cultures, and RBE4 cells.
- MRP activity was assessed by measuring [3H]vincristine accumulation in the presence of MRP modulators.
Main Results:
- MDR1a P-gp mRNA was specific to brain microvessels, while MDR1b mRNA was in the parenchyma.
- MRP1 mRNA was found in both microvessels and parenchyma, but protein expression was weak in microvessels.
- MRP1 expression was higher in parenchyma and cultured endothelial cells, with reduced expression when co-cultured with astrocytes.
- Low MRP activity was detected in primary endothelial monocultures, but not in co-cultures or RBE4 cells.
Conclusions:
- MRP1 is not predominantly expressed in rat blood-brain barrier endothelial cells, unlike P-gp.
- MRP1 and MDR1b P-gp may be expressed in other cerebral cells.
- Astrocyte co-culture influences MRP1 expression in brain endothelial cells.