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The role of multidrug resistance proteins MRP1, MRP2 and MRP3 in cellular folate homeostasis
Authors:Hooijberg Jan Hendrik  Peters Godefridus J  Assaraf Yehuda G  Kathmann Ietje  Priest David G  Bunni Marlene A  Veerman Anjo J P  Scheffer George L  Kaspers Gertjan J L  Jansen Gerrit
Affiliation:Department of Pediatric Hematology/Oncology, VU University Medical Center (VUMC), De Boelelaan 1117, 1007 MB, Amsterdam, The Netherlands. jh.hooijberg@vumc.nl
Abstract:Previously, we reported that the multidrug resistance proteins MRP1, MRP2 and MRP3 confer resistance to therapeutic antifolates by mediating their cellular extrusion. We now determined whether MRPs also play a role in controlling cellular homeostasis of natural folates. In MRP1, MRP2 and MRP3-transfected 2008 human ovarian carcinoma cells total cellular folate content was 32-38% lower than in 2008 cells (105+/-14pmolfolate/mgprotein) when grown in medium containing 2.3 microM folic acid (FA). Under these conditions cellular growth rates were not compromised. However, when cells were challenged under folate-depleted conditions with a short exposure (4 hr) to FA or leucovorin, MRP1 and MRP3 overexpressing cells were impaired in their growth. In contrast to wild-type cells, MRP1 transfected cells retained only 60% of the maximum growth when exposed to 500 nM leucovorin or 500 microM FA. For 2008/MRP1 and 2008/MRP3 cells FA growth stimulation capacity was dramatically decreased when, during a 4 hr exposure, metabolism into rapidly polyglutamatable and retainable dihydrofolate was blocked by the dihydrofolate reductase inhibitor trimetrexate. To retain growth under such conditions MRP1 overexpressing cells required much higher concentrations of FA (EC(50) > 500 microM) compared to 2008 cells (EC(50): 12 microM). These results suggest that down- and up-regulation of MRP1 (and MRP3) expression can influence cellular folate homeostasis, in particular when cellular retention by polyglutamylation of folates is attenuated.
Keywords:RFC, reduced folate carrier   MTX, methotrexate   MRP, multidrug resistance protein   FA, folic acid   FPGS, folylpolyglutamyl synthetase   5FU, 5-fluorouracil   LF, low-folate   LV, leucovorin   HF, high-folate   DHFR, dihydrofolate reductase   TS, thymidylate synthase
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