General Information of Drug Off-Target (DOT) (ID: OTK1M79V)

DOT Name Solute carrier family 23 member 3 (SLC23A3)
Synonyms HPC E2-binding protein 3; Na(+)/L-ascorbic acid transporter 3; Sodium-dependent vitamin C transporter 3
Gene Name SLC23A3
UniProt ID
S23A3_HUMAN
3D Structure
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2D Sequence (FASTA)
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3D Structure (PDB)
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Pfam ID
PF00860
Sequence
MSRSPLNPSQLRSVGSQDALAPLPPPAPQNPSTHSWDPLCGSLPWGLSCLLALQHVLVMA
SLLCVSHLLLLCSLSPGGLSYSPSQLLASSFFSCGMSTILQTWMGSRLPLVQAPSLEFLI
PALVLTSQKLPRAIQTPGNSSLMLHLCRGPSCHGLGHWNTSLQEVSGAVVVSGLLQGMMG
LLGSPGHVFPHCGPLVLAPSLVVAGLSAHREVAQFCFTHWGLALLVILLMVVCSQHLGSC
QFHVCPWRRASTSSTHTPLPVFRLLSVLIPVACVWIVSAFVGFSVIPQELSAPTKAPWIW
LPHPGEWNWPLLTPRALAAGISMALAASTSSLGCYALCGRLLHLPPPPPHACSRGLSLEG
LGSVLAGLLGSPMGTASSFPNVGKVGLIQAGSQQVAHLVGLLCVGLGLSPRLAQLLTTIP
LPVVGGVLGVTQAVVLSAGFSSFYLADIDSGRNIFIVGFSIFMALLLPRWFREAPVLFST
GWSPLDVLLHSLLTQPIFLAGLSGFLLENTIPGTQLERGLGQGLPSPFTAQEARMPQKPR
EKAAQVYRLPFPIQNLCPCIPQPLHCLCPLPEDPGDEEGGSSEPEEMADLLPGSGEPCPE
SSREGFRSQK
Function Acts as a sodium-dependent hypoxanthine transporter. May show xanthine-hypoxanthine exchange activity.

Molecular Interaction Atlas (MIA) of This DOT

Molecular Interaction Atlas (MIA) Jump to Detail Molecular Interaction Atlas of This DOT
2 Drug(s) Affected the Gene/Protein Processing of This DOT
Drug Name Drug ID Highest Status Interaction REF
Rifampicin DM5DSFZ Approved Rifampicin decreases the expression of Solute carrier family 23 member 3 (SLC23A3). [1]
Urethane DM7NSI0 Phase 4 Urethane increases the expression of Solute carrier family 23 member 3 (SLC23A3). [2]
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1 Drug(s) Affected the Post-Translational Modifications of This DOT
Drug Name Drug ID Highest Status Interaction REF
Benzo(a)pyrene DMN7J43 Phase 1 Benzo(a)pyrene increases the methylation of Solute carrier family 23 member 3 (SLC23A3). [3]
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References

1 Rifampin Regulation of Drug Transporters Gene Expression and the Association of MicroRNAs in Human Hepatocytes. Front Pharmacol. 2016 Apr 26;7:111.
2 Ethyl carbamate induces cell death through its effects on multiple metabolic pathways. Chem Biol Interact. 2017 Nov 1;277:21-32.
3 Air pollution and DNA methylation alterations in lung cancer: A systematic and comparative study. Oncotarget. 2017 Jan 3;8(1):1369-1391. doi: 10.18632/oncotarget.13622.