ABCG2 p.Arg482Thr

Predicted by SNAP2: A: D (91%), C: D (85%), D: D (95%), E: D (95%), F: D (91%), G: D (95%), H: D (95%), I: D (85%), K: D (85%), L: D (91%), M: D (85%), N: D (95%), P: D (95%), Q: D (95%), S: D (91%), T: D (91%), V: D (91%), W: D (95%), Y: D (95%),
Predicted by PROVEAN: A: D, C: D, D: D, E: D, F: D, G: D, H: D, I: D, K: D, L: D, M: D, N: D, P: D, Q: D, S: D, T: D, V: D, W: D, Y: D,

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[hide] Honjo Y, Hrycyna CA, Yan QW, Medina-Perez WY, Robey RW, van de Laar A, Litman T, Dean M, Bates SE
Acquired mutations in the MXR/BCRP/ABCP gene alter substrate specificity in MXR/BCRP/ABCP-overexpressing cells.
Cancer Res. 2001 Sep 15;61(18):6635-9., 2001-09-15 [PMID:11559526] [PubMed]

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[hide] Bates SE, Robey R, Miyake K, Rao K, Ross DD, Litman T
The role of half-transporters in multidrug resistance.
J Bioenerg Biomembr. 2001 Dec;33(6):503-11., [PMID:11804192] [PubMed]

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[hide] Allen JD, Jackson SC, Schinkel AH
A mutation hot spot in the Bcrp1 (Abcg2) multidrug transporter in mouse cell lines selected for Doxorubicin resistance.
Cancer Res. 2002 Apr 15;62(8):2294-9., 2002-04-15 [PMID:11956086] [PubMed]

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[hide] Volk EL, Farley KM, Wu Y, Li F, Robey RW, Schneider E
Overexpression of wild-type breast cancer resistance protein mediates methotrexate resistance.
Cancer Res. 2002 Sep 1;62(17):5035-40., 2002-09-01 [PMID:12208758] [PubMed]

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[hide] Ozvegy C, Varadi A, Sarkadi B
Characterization of drug transport, ATP hydrolysis, and nucleotide trapping by the human ABCG2 multidrug transporter. Modulation of substrate specificity by a point mutation.
J Biol Chem. 2002 Dec 13;277(50):47980-90. Epub 2002 Oct 8., 2002-12-13 [PMID:12374800] [PubMed]

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[hide] Wang X, Furukawa T, Nitanda T, Okamoto M, Sugimoto Y, Akiyama S, Baba M
Breast cancer resistance protein (BCRP/ABCG2) induces cellular resistance to HIV-1 nucleoside reverse transcriptase inhibitors.
Mol Pharmacol. 2003 Jan;63(1):65-72., [PMID:12488537] [PubMed]

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[hide] Schinkel AH, Jonker JW
Mammalian drug efflux transporters of the ATP binding cassette (ABC) family: an overview.
Adv Drug Deliv Rev. 2003 Jan 21;55(1):3-29., 2003-01-21 [PMID:12535572] [PubMed]

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[hide] Zamber CP, Lamba JK, Yasuda K, Farnum J, Thummel K, Schuetz JD, Schuetz EG
Natural allelic variants of breast cancer resistance protein (BCRP) and their relationship to BCRP expression in human intestine.
Pharmacogenetics. 2003 Jan;13(1):19-28., [PMID:12544509] [PubMed]

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[hide] Honjo Y, Morisaki K, Huff LM, Robey RW, Hung J, Dean M, Bates SE
Single-nucleotide polymorphism (SNP) analysis in the ABC half-transporter ABCG2 (MXR/BCRP/ABCP1).
Cancer Biol Ther. 2002 Nov-Dec;1(6):696-702., [PMID:12642696] [PubMed]

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[hide] Ujhelly O, Ozvegy C, Varady G, Cervenak J, Homolya L, Grez M, Scheffer G, Roos D, Bates SE, Varadi A, Sarkadi B, Nemet K
Application of a human multidrug transporter (ABCG2) variant as selectable marker in gene transfer to progenitor cells.
Hum Gene Ther. 2003 Mar 1;14(4):403-12., 2003-03-01 [PMID:12659681] [PubMed]

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[hide] Rajendra R, Gounder MK, Saleem A, Schellens JH, Ross DD, Bates SE, Sinko P, Rubin EH
Differential effects of the breast cancer resistance protein on the cellular accumulation and cytotoxicity of 9-aminocamptothecin and 9-nitrocamptothecin.
Cancer Res. 2003 Jun 15;63(12):3228-33., 2003-06-15 [PMID:12810652] [PubMed]

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[hide] Chen ZS, Robey RW, Belinsky MG, Shchaveleva I, Ren XQ, Sugimoto Y, Ross DD, Bates SE, Kruh GD
Transport of methotrexate, methotrexate polyglutamates, and 17beta-estradiol 17-(beta-D-glucuronide) by ABCG2: effects of acquired mutations at R482 on methotrexate transport.
Cancer Res. 2003 Jul 15;63(14):4048-54., 2003-07-15 [PMID:12874005] [PubMed]

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[hide] Nakanishi T, Karp JE, Tan M, Doyle LA, Peters T, Yang W, Wei D, Ross DD
Quantitative analysis of breast cancer resistance protein and cellular resistance to flavopiridol in acute leukemia patients.
Clin Cancer Res. 2003 Aug 15;9(9):3320-8., 2003-08-15 [PMID:12960118] [PubMed]

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[hide] Volk EL, Schneider E
Wild-type breast cancer resistance protein (BCRP/ABCG2) is a methotrexate polyglutamate transporter.
Cancer Res. 2003 Sep 1;63(17):5538-43., 2003-09-01 [PMID:14500392] [PubMed]

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[hide] Miwa M, Tsukahara S, Ishikawa E, Asada S, Imai Y, Sugimoto Y
Single amino acid substitutions in the transmembrane domains of breast cancer resistance protein (BCRP) alter cross resistance patterns in transfectants.
Int J Cancer. 2003 Dec 10;107(5):757-63., 2003-12-10 [PMID:14566825] [PubMed]

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[hide] Doyle LA, Ross DD
Multidrug resistance mediated by the breast cancer resistance protein BCRP (ABCG2).
Oncogene. 2003 Oct 20;22(47):7340-58., 2003-10-20 [PMID:14576842] [PubMed]

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[hide] Robey RW, Honjo Y, Morisaki K, Nadjem TA, Runge S, Risbood M, Poruchynsky MS, Bates SE
Mutations at amino-acid 482 in the ABCG2 gene affect substrate and antagonist specificity.
Br J Cancer. 2003 Nov 17;89(10):1971-8., 2003-11-17 [PMID:14612912] [PubMed]

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[hide] Brooks TA, Minderman H, O'Loughlin KL, Pera P, Ojima I, Baer MR, Bernacki RJ
Taxane-based reversal agents modulate drug resistance mediated by P-glycoprotein, multidrug resistance protein, and breast cancer resistance protein.
Mol Cancer Ther. 2003 Nov;2(11):1195-205., [PMID:14617793] [PubMed]

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[hide] Dietrich CG, Geier A, Oude Elferink RP
ABC of oral bioavailability: transporters as gatekeepers in the gut.
Gut. 2003 Dec;52(12):1788-95., [PMID:14633964] [PubMed]

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[hide] Nakanishi T, Doyle LA, Hassel B, Wei Y, Bauer KS, Wu S, Pumplin DW, Fang HB, Ross DD
Functional characterization of human breast cancer resistance protein (BCRP, ABCG2) expressed in the oocytes of Xenopus laevis.
Mol Pharmacol. 2003 Dec;64(6):1452-62., [PMID:14645676] [PubMed]

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[hide] Mizuarai S, Aozasa N, Kotani H
Single nucleotide polymorphisms result in impaired membrane localization and reduced atpase activity in multidrug transporter ABCG2.
Int J Cancer. 2004 Mar 20;109(2):238-46., 2004-03-20 [PMID:14750175] [PubMed]

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[hide] Han B, Zhang JT
Multidrug resistance in cancer chemotherapy and xenobiotic protection mediated by the half ATP-binding cassette transporter ABCG2.
Curr Med Chem Anticancer Agents. 2004 Jan;4(1):31-42., [PMID:14754410] [PubMed]

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[hide] Robey RW, Steadman K, Polgar O, Morisaki K, Blayney M, Mistry P, Bates SE
Pheophorbide a is a specific probe for ABCG2 function and inhibition.
Cancer Res. 2004 Feb 15;64(4):1242-6., 2004-02-15 [PMID:14973080] [PubMed]

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[hide] Ee PL, Kamalakaran S, Tonetti D, He X, Ross DD, Beck WT
Identification of a novel estrogen response element in the breast cancer resistance protein (ABCG2) gene.
Cancer Res. 2004 Feb 15;64(4):1247-51., 2004-02-15 [PMID:14973083] [PubMed]

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[hide] Candeil L, Gourdier I, Peyron D, Vezzio N, Copois V, Bibeau F, Orsetti B, Scheffer GL, Ychou M, Khan QA, Pommier Y, Pau B, Martineau P, Del Rio M
ABCG2 overexpression in colon cancer cells resistant to SN38 and in irinotecan-treated metastases.
Int J Cancer. 2004 May 10;109(6):848-54., 2004-05-10 [PMID:15027118] [PubMed]

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[hide] Bates SE, Medina-Perez WY, Kohlhagen G, Antony S, Nadjem T, Robey RW, Pommier Y
ABCG2 mediates differential resistance to SN-38 (7-ethyl-10-hydroxycamptothecin) and homocamptothecins.
J Pharmacol Exp Ther. 2004 Aug;310(2):836-42. Epub 2004 Apr 9., [PMID:15075385] [PubMed]

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[hide] Alqawi O, Bates S, Georges E
Arginine482 to threonine mutation in the breast cancer resistance protein ABCG2 inhibits rhodamine 123 transport while increasing binding.
Biochem J. 2004 Sep 1;382(Pt 2):711-6., 2004-09-01 [PMID:15139851] [PubMed]

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[hide] Sarkadi B, Ozvegy-Laczka C, Nemet K, Varadi A
ABCG2 -- a transporter for all seasons.
FEBS Lett. 2004 Jun 1;567(1):116-20., 2004-06-01 [PMID:15165903] [PubMed]

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[hide] Burger H, van Tol H, Boersma AW, Brok M, Wiemer EA, Stoter G, Nooter K
Imatinib mesylate (STI571) is a substrate for the breast cancer resistance protein (BCRP)/ABCG2 drug pump.
Blood. 2004 Nov 1;104(9):2940-2. Epub 2004 Jul 13., 2004-11-01 [PMID:15251980] [PubMed]

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[hide] Walter RB, Raden BW, Thompson J, Flowers DA, Kiem HP, Bernstein ID, Linenberger ML
Breast cancer resistance protein (BCRP/ABCG2) does not confer resistance to gemtuzumab ozogamicin and calicheamicin-gamma1 in acute myeloid leukemia cells.
Leukemia. 2004 Nov;18(11):1914-7., [PMID:15385942] [PubMed]

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[hide] Kobayashi D, Ieiri I, Hirota T, Takane H, Maegawa S, Kigawa J, Suzuki H, Nanba E, Oshimura M, Terakawa N, Otsubo K, Mine K, Sugiyama Y
Functional assessment of ABCG2 (BCRP) gene polymorphisms to protein expression in human placenta.
Drug Metab Dispos. 2005 Jan;33(1):94-101. Epub 2004 Oct 8., [PMID:15475413] [PubMed]

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[hide] Garcia-Escarp M, Martinez-Munoz V, Sales-Pardo I, Barquinero J, Domingo JC, Marin P, Petriz J
Flow cytometry-based approach to ABCG2 function suggests that the transporter differentially handles the influx and efflux of drugs.
Cytometry A. 2004 Dec;62(2):129-38., [PMID:15517563] [PubMed]

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[hide] Ejendal KF, Hrycyna CA
Differential sensitivities of the human ATP-binding cassette transporters ABCG2 and P-glycoprotein to cyclosporin A.
Mol Pharmacol. 2005 Mar;67(3):902-11. Epub 2004 Dec 14., [PMID:15598974] [PubMed]

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[hide] Itoda M, Saito Y, Shirao K, Minami H, Ohtsu A, Yoshida T, Saijo N, Suzuki H, Sugiyama Y, Ozawa S, Sawada J
Eight novel single nucleotide polymorphisms in ABCG2/BCRP in Japanese cancer patients administered irinotacan.
Drug Metab Pharmacokinet. 2003;18(3):212-7., [PMID:15618737] [PubMed]

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[hide] Kager L, Cheok M, Yang W, Zaza G, Cheng Q, Panetta JC, Pui CH, Downing JR, Relling MV, Evans WE
Folate pathway gene expression differs in subtypes of acute lymphoblastic leukemia and influences methotrexate pharmacodynamics.
J Clin Invest. 2005 Jan;115(1):110-7., [PMID:15630450] [PubMed]

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[hide] Ozvegy-Laczka C, Koblos G, Sarkadi B, Varadi A
Single amino acid (482) variants of the ABCG2 multidrug transporter: major differences in transport capacity and substrate recognition.
Biochim Biophys Acta. 2005 Feb 1;1668(1):53-63., 2005-02-01 [PMID:15670731] [PubMed]

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[hide] Robey RW, Steadman K, Polgar O, Bates SE
ABCG2-mediated transport of photosensitizers: potential impact on photodynamic therapy.
Cancer Biol Ther. 2005 Feb;4(2):187-94. Epub 2005 Feb 8., [PMID:15684613] [PubMed]

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[hide] Xia CQ, Liu N, Yang D, Miwa G, Gan LS
Expression, localization, and functional characteristics of breast cancer resistance protein in Caco-2 cells.
Drug Metab Dispos. 2005 May;33(5):637-43. Epub 2005 Feb 16., [PMID:15716365] [PubMed]

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[hide] Nakamura Y, Oka M, Soda H, Shiozawa K, Yoshikawa M, Itoh A, Ikegami Y, Tsurutani J, Nakatomi K, Kitazaki T, Doi S, Yoshida H, Kohno S
Gefitinib ("Iressa", ZD1839), an epidermal growth factor receptor tyrosine kinase inhibitor, reverses breast cancer resistance protein/ABCG2-mediated drug resistance.
Cancer Res. 2005 Feb 15;65(4):1541-6., 2005-02-15 [PMID:15735043] [PubMed]

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[hide] Henriksen U, Gether U, Litman T
Effect of Walker A mutation (K86M) on oligomerization and surface targeting of the multidrug resistance transporter ABCG2.
J Cell Sci. 2005 Apr 1;118(Pt 7):1417-26. Epub 2005 Mar 15., 2005-04-01 [PMID:15769853] [PubMed]

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[hide] Diop NK, Hrycyna CA
N-Linked glycosylation of the human ABC transporter ABCG2 on asparagine 596 is not essential for expression, transport activity, or trafficking to the plasma membrane.
Biochemistry. 2005 Apr 12;44(14):5420-9., 2005-04-12 [PMID:15807535] [PubMed]

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[hide] Morisaki K, Robey RW, Ozvegy-Laczka C, Honjo Y, Polgar O, Steadman K, Sarkadi B, Bates SE
Single nucleotide polymorphisms modify the transporter activity of ABCG2.
Cancer Chemother Pharmacol. 2005 Aug;56(2):161-72. Epub 2005 Apr 19., [PMID:15838659] [PubMed]

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[hide] Lepper ER, Nooter K, Verweij J, Acharya MR, Figg WD, Sparreboom A
Mechanisms of resistance to anticancer drugs: the role of the polymorphic ABC transporters ABCB1 and ABCG2.
Pharmacogenomics. 2005 Mar;6(2):115-38., [PMID:15882131] [PubMed]

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[hide] Ahmed-Belkacem A, Pozza A, Munoz-Martinez F, Bates SE, Castanys S, Gamarro F, Di Pietro A, Perez-Victoria JM
Flavonoid structure-activity studies identify 6-prenylchrysin and tectochrysin as potent and specific inhibitors of breast cancer resistance protein ABCG2.
Cancer Res. 2005 Jun 1;65(11):4852-60., 2005-06-01 [PMID:15930306] [PubMed]

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[hide] Burger H, van Tol H, Brok M, Wiemer EA, de Bruijn EA, Guetens G, de Boeck G, Sparreboom A, Verweij J, Nooter K
Chronic imatinib mesylate exposure leads to reduced intracellular drug accumulation by induction of the ABCG2 (BCRP) and ABCB1 (MDR1) drug transport pumps.
Cancer Biol Ther. 2005 Jul;4(7):747-52. Epub 2005 Jul 9., [PMID:15970668] [PubMed]

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[hide] Bhatia A, Schafer HJ, Hrycyna CA
Oligomerization of the human ABC transporter ABCG2: evaluation of the native protein and chimeric dimers.
Biochemistry. 2005 Aug 16;44(32):10893-904., 2005-08-16 [PMID:16086592] [PubMed]

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[hide] Mao Q, Unadkat JD
Role of the breast cancer resistance protein (ABCG2) in drug transport.
AAPS J. 2005 May 11;7(1):E118-33., [PMID:16146333] [PubMed]

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[hide] Krishnamurthy P, Schuetz JD
The ABC transporter Abcg2/Bcrp: role in hypoxia mediated survival.
Biometals. 2005 Aug;18(4):349-58., [PMID:16158227] [PubMed]

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[hide] Ishikawa T, Tamura A, Saito H, Wakabayashi K, Nakagawa H
Pharmacogenomics of the human ABC transporter ABCG2: from functional evaluation to drug molecular design.
Naturwissenschaften. 2005 Oct;92(10):451-63., [PMID:16160819] [PubMed]

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[hide] Huang Y, Sadee W
Membrane transporters and channels in chemoresistance and -sensitivity of tumor cells.
Cancer Lett. 2006 Aug 8;239(2):168-82. Epub 2005 Oct 5., 2006-08-08 [PMID:16169662] [PubMed]

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[hide] Sakurai A, Tamura A, Onishi Y, Ishikawa T
Genetic polymorphisms of ATP-binding cassette transporters ABCB1 and ABCG2: therapeutic implications.
Expert Opin Pharmacother. 2005 Nov;6(14):2455-73., [PMID:16259577] [PubMed]

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[hide] Breedveld P, Beijnen JH, Schellens JH
Use of P-glycoprotein and BCRP inhibitors to improve oral bioavailability and CNS penetration of anticancer drugs.
Trends Pharmacol Sci. 2006 Jan;27(1):17-24. Epub 2005 Dec 5., [PMID:16337012] [PubMed]

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[hide] Cervenak J, Andrikovics H, Ozvegy-Laczka C, Tordai A, Nemet K, Varadi A, Sarkadi B
The role of the human ABCG2 multidrug transporter and its variants in cancer therapy and toxicology.
Cancer Lett. 2006 Mar 8;234(1):62-72. Epub 2005 Dec 7., 2006-03-08 [PMID:16337740] [PubMed]

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[hide] Ishikawa T, Sakurai A, Kanamori Y, Nagakura M, Hirano H, Takarada Y, Yamada K, Fukushima K, Kitajima M
High-speed screening of human ATP-binding cassette transporter function and genetic polymorphisms: new strategies in pharmacogenomics.
Methods Enzymol. 2005;400:485-510., [PMID:16399366] [PubMed]

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[hide] Gupta A, Dai Y, Vethanayagam RR, Hebert MF, Thummel KE, Unadkat JD, Ross DD, Mao Q
Cyclosporin A, tacrolimus and sirolimus are potent inhibitors of the human breast cancer resistance protein (ABCG2) and reverse resistance to mitoxantrone and topotecan.
Cancer Chemother Pharmacol. 2006 Sep;58(3):374-83. Epub 2006 Jan 11., [PMID:16404634] [PubMed]

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[hide] Saito H, Hirano H, Nakagawa H, Fukami T, Oosumi K, Murakami K, Kimura H, Kouchi T, Konomi M, Tao E, Tsujikawa N, Tarui S, Nagakura M, Osumi M, Ishikawa T
A new strategy of high-speed screening and quantitative structure-activity relationship analysis to evaluate human ATP-binding cassette transporter ABCG2-drug interactions.
J Pharmacol Exp Ther. 2006 Jun;317(3):1114-24. Epub 2006 Feb 17., [PMID:16489126] [PubMed]

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[hide] Ahmed-Belkacem A, Pozza A, Macalou S, Perez-Victoria JM, Boumendjel A, Di Pietro A
Inhibitors of cancer cell multidrug resistance mediated by breast cancer resistance protein (BCRP/ABCG2).
Anticancer Drugs. 2006 Mar;17(3):239-43., [PMID:16520651] [PubMed]

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[hide] Tamura A, Watanabe M, Saito H, Nakagawa H, Kamachi T, Okura I, Ishikawa T
Functional validation of the genetic polymorphisms of human ATP-binding cassette (ABC) transporter ABCG2: identification of alleles that are defective in porphyrin transport.
Mol Pharmacol. 2006 Jul;70(1):287-96. Epub 2006 Apr 11., [PMID:16608919] [PubMed]

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[hide] Modok S, Mellor HR, Callaghan R
Modulation of multidrug resistance efflux pump activity to overcome chemoresistance in cancer.
Curr Opin Pharmacol. 2006 Aug;6(4):350-4. Epub 2006 May 11., [PMID:16690355] [PubMed]

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[hide] Maekawa K, Itoda M, Sai K, Saito Y, Kaniwa N, Shirao K, Hamaguchi T, Kunitoh H, Yamamoto N, Tamura T, Minami H, Kubota K, Ohtsu A, Yoshida T, Saijo N, Kamatani N, Ozawa S, Sawada J
Genetic variation and haplotype structure of the ABC transporter gene ABCG2 in a Japanese population.
Drug Metab Pharmacokinet. 2006 Apr;21(2):109-21., [PMID:16702730] [PubMed]

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[hide] Asashima T, Hori S, Ohtsuki S, Tachikawa M, Watanabe M, Mukai C, Kitagaki S, Miyakoshi N, Terasaki T
ATP-binding cassette transporter G2 mediates the efflux of phototoxins on the luminal membrane of retinal capillary endothelial cells.
Pharm Res. 2006 Jun;23(6):1235-42. Epub 2006 May 25., [PMID:16715370] [PubMed]

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[hide] Ejendal KF, Diop NK, Schweiger LC, Hrycyna CA
The nature of amino acid 482 of human ABCG2 affects substrate transport and ATP hydrolysis but not substrate binding.
Protein Sci. 2006 Jul;15(7):1597-607., [PMID:16815914] [PubMed]

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[hide] Pozza A, Perez-Victoria JM, Sardo A, Ahmed-Belkacem A, Di Pietro A
Purification of breast cancer resistance protein ABCG2 and role of arginine-482.
Cell Mol Life Sci. 2006 Aug;63(16):1912-22., [PMID:16847575] [PubMed]

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[hide] Xia CQ, Yang JJ, Gan LS
Breast cancer resistance protein in pharmacokinetics and drug-drug interactions.
Expert Opin Drug Metab Toxicol. 2005 Dec;1(4):595-611., [PMID:16863427] [PubMed]

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[hide] Wakabayashi K, Tamura A, Saito H, Onishi Y, Ishikawa T
Human ABC transporter ABCG2 in xenobiotic protection and redox biology.
Drug Metab Rev. 2006;38(3):371-91., [PMID:16877258] [PubMed]

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[hide] Chearwae W, Shukla S, Limtrakul P, Ambudkar SV
Modulation of the function of the multidrug resistance-linked ATP-binding cassette transporter ABCG2 by the cancer chemopreventive agent curcumin.
Mol Cancer Ther. 2006 Aug;5(8):1995-2006., [PMID:16928820] [PubMed]

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[hide] Kusuhara H, Sugiyama Y
ATP-binding cassette, subfamily G (ABCG family).
Pflugers Arch. 2007 Feb;453(5):735-44. Epub 2006 Sep 16., [PMID:16983557] [PubMed]

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[hide] Sarkadi B, Homolya L, Szakacs G, Varadi A
Human multidrug resistance ABCB and ABCG transporters: participation in a chemoimmunity defense system.
Physiol Rev. 2006 Oct;86(4):1179-236., [PMID:17015488] [PubMed]

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[hide] Breedveld P, Pluim D, Cipriani G, Dahlhaus F, van Eijndhoven MA, de Wolf CJ, Kuil A, Beijnen JH, Scheffer GL, Jansen G, Borst P, Schellens JH
The effect of low pH on breast cancer resistance protein (ABCG2)-mediated transport of methotrexate, 7-hydroxymethotrexate, methotrexate diglutamate, folic acid, mitoxantrone, topotecan, and resveratrol in in vitro drug transport models.
Mol Pharmacol. 2007 Jan;71(1):240-9. Epub 2006 Oct 10., [PMID:17032904] [PubMed]

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[hide] Xia CQ, Liu N, Miwa GT, Gan LS
Interactions of cyclosporin a with breast cancer resistance protein.
Drug Metab Dispos. 2007 Apr;35(4):576-82. Epub 2007 Jan 12., [PMID:17220244] [PubMed]

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[hide] Tamura A, Wakabayashi K, Onishi Y, Nakagawa H, Tsuji M, Matsuda Y, Ishikawa T
Genetic polymorphisms of human ABC transporter ABCG2: development of the standard method for functional validation of SNPs by using the Flp recombinase system.
J Exp Ther Oncol. 2006;6(1):1-11., [PMID:17228519] [PubMed]

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