ABCC2 p.Lys1299Gln

Predicted by SNAP2: A: N (87%), C: N (93%), D: N (82%), E: N (97%), F: D (53%), G: N (82%), H: N (97%), I: N (87%), L: N (82%), M: N (61%), N: N (93%), P: N (61%), Q: N (93%), R: N (97%), S: N (93%), T: N (87%), V: N (93%), W: D (63%), Y: N (57%),
Predicted by PROVEAN: A: N, C: D, D: N, E: N, F: D, G: D, H: N, I: D, L: D, M: D, N: N, P: D, Q: N, R: N, S: N, T: N, V: D, W: D, Y: D,

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[hide] Gradhand U, Kim RB
Pharmacogenomics of MRP transporters (ABCC1-5) and BCRP (ABCG2).
Drug Metab Rev. 2008;40(2):317-54., [PMID:18464048]

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[hide] Nakamura T, Yamamori M, Sakaeda T
Pharmacogenetics of intestinal absorption.
Curr Drug Deliv. 2008 Jul;5(3):153-69., [PMID:18673259]

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[hide] Saito S, Iida A, Sekine A, Miura Y, Ogawa C, Kawauchi S, Higuchi S, Nakamura Y
Identification of 779 genetic variations in eight genes encoding members of the ATP-binding cassette, subfamily C (ABCC/MRP/CFTR.
J Hum Genet. 2002;47(4):147-71., [PMID:12166651]

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[hide] Nies AT, Keppler D
The apical conjugate efflux pump ABCC2 (MRP2).
Pflugers Arch. 2007 Feb;453(5):643-59. Epub 2006 Jul 18., [PMID:16847695]

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[hide] Wada M
Single nucleotide polymorphisms in ABCC2 and ABCB1 genes and their clinical impact in physiology and drug response.
Cancer Lett. 2006 Mar 8;234(1):40-50. Epub 2005 Dec 27., [PMID:16377077]

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