ABCB1 p.Asp800Asn

Predicted by SNAP2: A: D (85%), C: D (85%), E: N (66%), F: D (91%), G: D (91%), H: D (85%), I: D (91%), K: D (91%), L: D (91%), M: D (91%), N: D (85%), P: D (91%), Q: D (85%), R: D (91%), S: D (75%), T: D (85%), V: D (91%), W: D (91%), Y: D (91%),
Predicted by PROVEAN: A: D, C: D, E: N, F: D, G: D, H: D, I: D, K: D, L: D, M: D, N: D, P: D, Q: D, R: D, S: D, T: D, V: D, W: D, Y: D,

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[hide] Zhou SF, Di YM, Chan E, Du YM, Chow VD, Xue CC, Lai X, Wang JC, Li CG, Tian M, Duan W
Clinical pharmacogenetics and potential application in personalized medicine.
Curr Drug Metab. 2008 Oct;9(8):738-84., [PMID:18855611]

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[hide] Wolf SJ, Bachtiar M, Wang J, Sim TS, Chong SS, Lee CG
An update on ABCB1 pharmacogenetics: insights from a 3D model into the location and evolutionary conservation of residues corresponding to SNPs associated with drug pharmacokinetics.
Pharmacogenomics J. 2011 Oct;11(5):315-25. doi: 10.1038/tpj.2011.16. Epub 2011 May 31., [PMID:21625253]

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[hide] Kapoor K, Bhatnagar J, Chufan EE, Ambudkar SV
Mutations in intracellular loops 1 and 3 lead to misfolding of human P-glycoprotein (ABCB1) that can be rescued by cyclosporine A, which reduces its association with chaperone Hsp70.
J Biol Chem. 2013 Nov 8;288(45):32622-36. doi: 10.1074/jbc.M113.498980. Epub 2013 Sep 24., [PMID:24064216]

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