Title : The multidrug resistance protein 5 (ABCC5) confers resistance to 5-fluorouracil and transports its monophosphorylated metabolites.

Pub. Date : 2005 May

PMID : 15897250






20 Functional Relationships(s)
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Protein Name
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1 The multidrug resistance protein 5 (ABCC5) confers resistance to 5-fluorouracil and transports its monophosphorylated metabolites. Fluorouracil ATP binding cassette subfamily C member 5 Homo sapiens
2 The present study shows that the ATP-dependent multidrug resistance protein-5 (MRP5, ABCC5) confers resistance to 5-FU by transporting the monophosphate metabolites. Adenosine Triphosphate ATP binding cassette subfamily C member 5 Homo sapiens
3 The present study shows that the ATP-dependent multidrug resistance protein-5 (MRP5, ABCC5) confers resistance to 5-FU by transporting the monophosphate metabolites. Adenosine Triphosphate ATP binding cassette subfamily C member 5 Homo sapiens
4 The present study shows that the ATP-dependent multidrug resistance protein-5 (MRP5, ABCC5) confers resistance to 5-FU by transporting the monophosphate metabolites. Fluorouracil ATP binding cassette subfamily C member 5 Homo sapiens
5 The present study shows that the ATP-dependent multidrug resistance protein-5 (MRP5, ABCC5) confers resistance to 5-FU by transporting the monophosphate metabolites. Fluorouracil ATP binding cassette subfamily C member 5 Homo sapiens
6 The present study shows that the ATP-dependent multidrug resistance protein-5 (MRP5, ABCC5) confers resistance to 5-FU by transporting the monophosphate metabolites. monophosphate ATP binding cassette subfamily C member 5 Homo sapiens
7 The present study shows that the ATP-dependent multidrug resistance protein-5 (MRP5, ABCC5) confers resistance to 5-FU by transporting the monophosphate metabolites. monophosphate ATP binding cassette subfamily C member 5 Homo sapiens
8 In 3-day cytotoxicity assays, MRP5-transfected cells were approximately 9-fold resistant to 5-FU and 6-thioguanine. Fluorouracil ATP binding cassette subfamily C member 5 Homo sapiens
9 In 3-day cytotoxicity assays, MRP5-transfected cells were approximately 9-fold resistant to 5-FU and 6-thioguanine. Thioguanine ATP binding cassette subfamily C member 5 Homo sapiens
10 Studies with inside-out membrane vesicles prepared from transfected cells showed that MRP5 mediates ATP-dependent transport of 5 micromol/L [(3)H]5-FdUMP, [(3)H]5-FUMP, [(3)H]dUMP, and not [(3)H]5-FUdR, or [(3)H]5-FU. Adenosine Triphosphate ATP binding cassette subfamily C member 5 Homo sapiens
11 Studies with inside-out membrane vesicles prepared from transfected cells showed that MRP5 mediates ATP-dependent transport of 5 micromol/L [(3)H]5-FdUMP, [(3)H]5-FUMP, [(3)H]dUMP, and not [(3)H]5-FUdR, or [(3)H]5-FU. 5-fdump ATP binding cassette subfamily C member 5 Homo sapiens
12 Studies with inside-out membrane vesicles prepared from transfected cells showed that MRP5 mediates ATP-dependent transport of 5 micromol/L [(3)H]5-FdUMP, [(3)H]5-FUMP, [(3)H]dUMP, and not [(3)H]5-FUdR, or [(3)H]5-FU. 5-fluorouridine 5'-phosphate ATP binding cassette subfamily C member 5 Homo sapiens
13 Studies with inside-out membrane vesicles prepared from transfected cells showed that MRP5 mediates ATP-dependent transport of 5 micromol/L [(3)H]5-FdUMP, [(3)H]5-FUMP, [(3)H]dUMP, and not [(3)H]5-FUdR, or [(3)H]5-FU. 2'-deoxyuridylic acid ATP binding cassette subfamily C member 5 Homo sapiens
14 Studies with inside-out membrane vesicles prepared from transfected cells showed that MRP5 mediates ATP-dependent transport of 5 micromol/L [(3)H]5-FdUMP, [(3)H]5-FUMP, [(3)H]dUMP, and not [(3)H]5-FUdR, or [(3)H]5-FU. 5-fluoro-2'-deoxyuridine ATP binding cassette subfamily C member 5 Homo sapiens
15 Studies with inside-out membrane vesicles prepared from transfected cells showed that MRP5 mediates ATP-dependent transport of 5 micromol/L [(3)H]5-FdUMP, [(3)H]5-FUMP, [(3)H]dUMP, and not [(3)H]5-FUdR, or [(3)H]5-FU. Fluorouracil ATP binding cassette subfamily C member 5 Homo sapiens
16 Furthermore, the 5-FU drug sensitivity of HEK-MRP5 cells was partially modulated to that of the HEK-vector by the presence of 40 micromol/L 5-nitro-2-(3-phenylpropylamino)-benzoic acid but not by 2 mmol/L probenecid. Fluorouracil ATP binding cassette subfamily C member 5 Homo sapiens
17 Furthermore, the 5-FU drug sensitivity of HEK-MRP5 cells was partially modulated to that of the HEK-vector by the presence of 40 micromol/L 5-nitro-2-(3-phenylpropylamino)-benzoic acid but not by 2 mmol/L probenecid. 5-nitro-2-(3-phenylpropylamino)benzoic acid ATP binding cassette subfamily C member 5 Homo sapiens
18 Furthermore, the 5-FU drug sensitivity of HEK-MRP5 cells was partially modulated to that of the HEK-vector by the presence of 40 micromol/L 5-nitro-2-(3-phenylpropylamino)-benzoic acid but not by 2 mmol/L probenecid. Probenecid ATP binding cassette subfamily C member 5 Homo sapiens
19 Thus, MRP5 transports the monophosphorylated metabolite of this nucleoside and when MRP5 is overexpressed in colorectal and breast tumors, it may contribute to 5-FU drug resistance. Nucleosides ATP binding cassette subfamily C member 5 Homo sapiens
20 Thus, MRP5 transports the monophosphorylated metabolite of this nucleoside and when MRP5 is overexpressed in colorectal and breast tumors, it may contribute to 5-FU drug resistance. Nucleosides ATP binding cassette subfamily C member 5 Homo sapiens