Drug Information
General Information | ||||||
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Drug ID |
DR00019
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Drug Name |
Estrone sulfate
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Synonyms |
Estrone 3-sulfate; Estrone hydrogen sulfate; Estrone sulphate; [3H]-estrone hydrogen sulfate; [3H]-estrone-3-sulphate; [3H]estrone-3-sulfate; [3H]estrone-3-sulphate
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Drug Type |
Small molecular drug
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Indication | Menopausal symptoms [ICD11: MF32] | Approved | [1] | |||
Structure |
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3D MOL | 2D MOL | |||||
Formula |
C18H22O5S
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Canonical SMILES |
CC12CCC3C(C1CCC2=O)CCC4=C3C=CC(=C4)OS(=O)(=O)O
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InChI |
InChI=1S/C18H22O5S/c1-18-9-8-14-13-5-3-12(23-24(20,21)22)10-11(13)2-4-15(14)16(18)6-7-17(18)19/h3,5,10,14-16H,2,4,6-9H2,1H3,(H,20,21,22)/t14-,15-,16+,18+/m1/s1
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InChIKey |
JKKFKPJIXZFSSB-CBZIJGRNSA-N
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CAS Number |
CAS 481-97-0
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Pharmaceutical Properties | Molecular Weight | 350.4 | Topological Polar Surface Area | 89 | ||
Heavy Atom Count | 24 | Rotatable Bond Count | 2 | |||
Hydrogen Bond Donor Count | 1 | Hydrogen Bond Acceptor Count | 5 | |||
XLogP |
2.5
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PubChem CID | ||||||
ChEBI ID |
CHEBI:17474
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DT(s) Transporting This Drug | ABCA8 | Transporter Info | ATP-binding cassette sub-family A member 8 | Substrate | [2] | |
BCRP | Transporter Info | Breast cancer resistance protein | Substrate | [3] | ||
BCRP | Transporter Info | Breast cancer resistance protein | Substrate | [4] | ||
MATE1 | Transporter Info | Multidrug and toxin extrusion protein 1 | Substrate | [5] | ||
MATE2 | Transporter Info | Multidrug and toxin extrusion protein 2 | Substrate | [5] | ||
MRP1 | Transporter Info | Multidrug resistance-associated protein 1 | Substrate | [6] | ||
MRP2 | Transporter Info | Multidrug resistance-associated protein 2 | Substrate | [7] | ||
NTCP | Transporter Info | Sodium/taurocholate cotransporting polypeptide | Substrate | [8] | ||
OAT3 | Transporter Info | Organic anion transporter 3 | Substrate | [9] | ||
OAT4 | Transporter Info | Organic anion transporter 4 | Substrate | [10] | ||
OAT6 | Transporter Info | Organic anion transporter 6 | Substrate | [11] | ||
OATP1A2 | Transporter Info | Organic anion transporting polypeptide 1A2 | Substrate | [12] | ||
OATP1B1 | Transporter Info | Organic anion transporting polypeptide 1B1 | Substrate | [13] | ||
OATP1B3 | Transporter Info | Organic anion transporting polypeptide 1B3 | Substrate | [14] | ||
OATP2B1 | Transporter Info | Organic anion transporting polypeptide 2B1 | Substrate | [15] | ||
OATP3A1 | Transporter Info | Organic anion transporting polypeptide 3A1 | Substrate | [16] | ||
OATP4A1 | Transporter Info | Organic anion transporting polypeptide 4A1 | Substrate | [17] | ||
OATP4C1 | Transporter Info | Organic anion transporting polypeptide 4C1 | Substrate | [18] | ||
OSTalpha | Transporter Info | Organic solute transporter subunit alpha | Substrate | [19] | ||
OSTbeta | Transporter Info | Organic solute transporter subunit beta | Substrate | [19] | ||
OSTbeta | Transporter Info | Organic solute transporter subunit beta | Substrate | [19] | ||
P-GP | Transporter Info | P-glycoprotein 1 | Substrate | [20] | ||
Drug-Transporter Activity Data | ||||||
Drug-Transporter Activity Data | ABCA8 | Transporter Info | Km = 0.5 microM | Xenopus laevis oocytes-ABCA8 | [2] | |
BCRP | Transporter Info | Km = 16.6 microM | Mouse lymphoma cells (P388)-BCRP | [3] | ||
BCRP | Transporter Info | Km = 6.8 microM | Myelogenous leukemia cells (K562)-BCRP | [21] | ||
MATE1 | Transporter Info | Km = 470 microM | Human embryonic kidney cells (HEK293)-MATE1 | [5] | ||
MATE2 | Transporter Info | Km = 850 microM | Human embryonic kidney cells (HEK293)-MATE2K | [5] | ||
MRP1 | Transporter Info | Km = 0.73 microM | Human cervical cancer cell line (Hela)-MRP1 | [22] | ||
MRP1 | Transporter Info | Km = 2.1 microM | Human cervical cancer cell line (Hela)-MRP1 | [22] | ||
MRP1 | Transporter Info | Km = 4.2 microM | Human embryonic kidney cells (HEK293)-MRP1 | [6] | ||
NTCP | Transporter Info | Km = 27 microM | Human cervical cancer cell line (Hela)-NTCP | [8] | ||
OAT3 | Transporter Info | Km = 6.3 microM | Human embryonic kidney cells (HEK293)-OAT3 | [23] | ||
OAT3 | Transporter Info | Km = 17 microM | Human embryonic kidney cells (HEK293)-OAT3 | [24] | ||
OAT3 | Transporter Info | Km = 2.18 microM | Monkey kidney fibroblast-like cell (COS)7-OAT3 | [25] | ||
OAT3 | Transporter Info | Km = 3.1 microM | Oocytes-OAT3 | [26] | ||
OAT3 | Transporter Info | Km = 2.21 microM | Proximal tubule (S2) cells-OAT3 | [27] | ||
OAT3 | Transporter Info | Km = 7.5 microM | Proximal tubule (S2) cells-OAT3 | [28] | ||
OAT4 | Transporter Info | Km = 1.01 microM | Oocytes-OAT4 | [29] | ||
OAT4 | Transporter Info | Km = 9.9 microM | Proximal tubule (S2) cells-OAT4 | [30] | ||
OAT6 | Transporter Info | Km = 44.8 microM | Chinese hamster ovary (CHO) cells-mOat6 | [11] | ||
OAT6 | Transporter Info | Km = 109.8 microM | Oocytes-mOat6 | [11] | ||
OATP1A2 | Transporter Info | Km = 13.6 microM | Human embryonic kidney cells (HEK293)-OATP1A2 | [31] | ||
OATP1A2 | Transporter Info | Km = 16.1 microM | Human embryonic kidney cells (HEK293)-OATP1A2 | [32] | ||
OATP1A2 | Transporter Info | Km = 9.6 microM | Oocytes-OATP1A2 | [32] | ||
OATP1A2 | Transporter Info | Km = 59 microM | Oocytes-OATP1A2 | [33] | ||
OATP1B1 | Transporter Info | Km = 0.23 microM | Chinese hamster ovary (CHO) cells-OATP1B1 | [15] | ||
OATP1B1 | Transporter Info | Km = 2.4 microM | Chinese hamster ovary (CHO) cells-OATP1B1 | [14] | ||
OATP1B1 | Transporter Info | Km = 12.5 microM | Human embryonic kidney cells (HEK293)-OATP1B1 | [34] | ||
OATP1B1 | Transporter Info | Km = 0.46 microM | Human embryonic kidney cells (HEK293)-OATP1B1 | [35] | ||
OATP1B1 | Transporter Info | Km = 0.0675 microM | Human embryonic kidney cells (HEK293)-OATP1B1 | [36] | ||
OATP1B1 | Transporter Info | Km = 7 microM | Human embryonic kidney cells (HEK293)-OATP1B1 | [36] | ||
OATP1B1 | Transporter Info | Km = 0.094 microM | Oocytes-OATP1B1 | [36] | ||
OATP1B1 | Transporter Info | Km = 5.34 microM | Oocytes-OATP1B1 | [36] | ||
OATP1B3 | Transporter Info | Km = 58 microM | Chinese hamster ovary (CHO) cells-OATP1B3 | [14] | ||
OATP2B1 | Transporter Info | Km = 1.56 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [37] | ||
OATP2B1 | Transporter Info | Km = 7.14 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [38] | ||
OATP2B1 | Transporter Info | Km = 8.09 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [39] | ||
OATP2B1 | Transporter Info | Km = 10.2 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [15] | ||
OATP2B1 | Transporter Info | Km = 12.5 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [36] | ||
OATP2B1 | Transporter Info | Km = 13.1 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [39] | ||
OATP2B1 | Transporter Info | Km = 20.9 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [40] | ||
OATP2B1 | Transporter Info | Km = 38.24 microM | Human embryonic kidney cells (HEK293)-OATP2B1 | [41] | ||
OATP2B1 | Transporter Info | Km = 1.81 microM | Human enterocyte-like 2 cells (Caco-2)-OATP2B1 | [37] | ||
OATP2B1 | Transporter Info | Km = 6.3 microM | Oocytes-OATP2B1 | [42] | ||
OSTbeta | Transporter Info | Km = 320 microM | Oocytes-OSTalpha-OSTbeta | [] | ||
References | ||||||
1 | Wikipedia: Estrone_sulfate_(medication) | |||||
2 | Functional analysis of ABCA8, a new drug transporter. Biochem Biophys Res Commun. 2002 Oct 18;298(1):41-5. | |||||
3 | ABCG2 transports sulfated conjugates of steroids and xenobiotics. J Biol Chem. 2003 Jun 20;278(25):22644-9. | |||||
4 | Differential selectivity of efflux transporter inhibitors in Caco-2 and MDCK-MDR1 monolayers: a strategy to assess the interaction of a new chemical entity with P-gp, BCRP, and MRP2. J Pharm Sci. 2012 May;101(5):1888-97. | |||||
5 | Substrate specificity of MATE1 and MATE2-K, human multidrug and toxin extrusions/H(+)-organic cation antiporters. Biochem Pharmacol. 2007 Jul 15;74(2):359-71. | |||||
6 | Molecular cloning and pharmacological characterization of rat multidrug resistance protein 1 (mrp1). Drug Metab Dispos. 2003 Aug;31(8):1016-26. | |||||
7 | Human hepatobiliary transport of organic anions analyzed by quadruple-transfected cells. Mol Pharmacol. 2005 Oct;68(4):1031-8. | |||||
8 | Ethnicity-dependent polymorphism in Na+-taurocholate cotransporting polypeptide (SLC10A1) reveals a domain critical for bile acid substrate recognition. J Biol Chem. 2004 Feb 20;279(8):7213-22. | |||||
9 | Involvement of tyrosine kinase and PI3K in the regulation of OAT3-mediated estrone sulfate transport in isolated rabbit renal proximal tubules. Am J Physiol Renal Physiol. 2005 Nov;289(5):F1057-64. | |||||
10 | Inhibitory effects of angiotensin II receptor antagonists and leukotriene receptor antagonists on the transport of human organic anion transporter 4. J Pharm Pharmacol. 2006 Nov;58(11):1499-505. | |||||
11 | Transport of estrone sulfate by the novel organic anion transporter Oat6 (Slc22a20). Am J Physiol Renal Physiol. 2006 Aug;291(2):F314-21. | |||||
12 | Determination of OATP-, NTCP- and OCT-mediated substrate uptake activities in individual and pooled batches of cryopreserved human hepatocytes. Eur J Pharm Sci. 2011 Jul 17;43(4):297-307. | |||||
13 | Role of transmembrane domain 10 for the function of organic anion transporting polypeptide 1B1. Protein Sci. 2009 Nov;18(11):2298-306. | |||||
14 | Effect of pregnane X receptor ligands on transport mediated by human OATP1B1 and OATP1B3. Eur J Pharmacol. 2008 Apr 14;584(1):57-65. | |||||
15 | Substrate-dependent drug-drug interactions between gemfibrozil, fluvastatin and other organic anion-transporting peptide (OATP) substrates on OATP1B1, OATP2B1, and OATP1B3. Drug Metab Dispos. 2007 Aug;35(8):1308-14. | |||||
16 | Molecular identification and characterization of novel members of the human organic anion transporter (OATP) family. Biochem Biophys Res Commun. 2000 Jun 24;273(1):251-60. | |||||
17 | Involvement of estrone-3-sulfate transporters in proliferation of hormone-dependent breast cancer cells. J Pharmacol Exp Ther. 2004 Dec;311(3):1032-7. | |||||
18 | Transport of estrone 3-sulfate mediated by organic anion transporter OATP4C1: estrone 3-sulfate binds to the different recognition site for digoxin in OATP4C1. Drug Metab Pharmacokinet. 2010;25(3):314-7. | |||||
19 | Functional complementation between a novel mammalian polygenic transport complex and an evolutionarily ancient organic solute transporter, OSTalpha-OSTbeta. J Biol Chem. 2003 Jul 25;278(30):27473-82. | |||||
20 | Identification of the hepatic efflux transporters of organic anions using double-transfected Madin-Darby canine kidney II cells expressing human organic anion-transporting polypeptide 1B1 (OATP1B1)/multidrug resistance-associated protein 2, OATP1B1/multidrug resistance 1, and OATP1B1/breast cancer resistance protein. J Pharmacol Exp Ther. 2005 Sep;314(3):1059-67. | |||||
21 | Breast cancer resistance protein exports sulfated estrogens but not free estrogens. Mol Pharmacol. 2003 Sep;64(3):610-8. | |||||
22 | Glutathione stimulates sulfated estrogen transport by multidrug resistance protein 1. J Biol Chem. 2001 Mar 2;276(9):6404-11. | |||||
23 | Human organic anion transporter hOAT3 is a potent transporter of cephalosporin antibiotics, in comparison with hOAT1. Biochem Pharmacol. 2005 Oct 1;70(7):1104-13. | |||||
24 | Expression of organic anion transporter 2 in the human kidney and its potential role in the tubular secretion of guanine-containing antiviral drugs. Drug Metab Dispos. 2012 Mar;40(3):617-24. | |||||
25 | Novobiocin is a potent inhibitor for human organic anion transporters. Drug Metab Dispos. 2009 Jun;37(6):1203-10. | |||||
26 | Identification and characterization of human organic anion transporter 3 expressing predominantly in the kidney. Mol Pharmacol. 2001 May;59(5):1277-86. | |||||
27 | Characterization of organic anion transport inhibitors using cells stably expressing human organic anion transporters. Eur J Pharmacol. 2001 May 11;419(2-3):113-20. | |||||
28 | Hydrogen peroxide downregulates human organic anion transporters in the basolateral membrane of the proximal tubule. Life Sci. 2000 Dec 29;68(6):679-87. | |||||
29 | Molecular cloning and characterization of multispecific organic anion transporter 4 expressed in the placenta. J Biol Chem. 2000 Feb 11;275(6):4507-12. | |||||
30 | Characterization of methotrexate transport and its drug interactions with human organic anion transporters. J Pharmacol Exp Ther. 2002 Aug;302(2):666-71. | |||||
31 | Interaction of methotrexate with organic-anion transporting polypeptide 1A2 and its genetic variants. J Pharmacol Exp Ther. 2006 Aug;318(2):521-9. | |||||
32 | Identification of multiple binding sites for substrate transport in bovine organic anion transporting polypeptide 1a2. Drug Metab Dispos. 2013 Mar;41(3):602-7. | |||||
33 | Multispecific amphipathic substrate transport by an organic anion transporter of human liver. J Hepatol. 1996 Nov;25(5):733-8. | |||||
34 | Hepatic uptake of bilirubin and its conjugates by the human organic anion transporter SLC21A6. J Biol Chem. 2001 Mar 30;276(13):9626-30. | |||||
35 | Contribution of OATP2 (OATP1B1) and OATP8 (OATP1B3) to the hepatic uptake of pitavastatin in humans. J Pharmacol Exp Ther. 2004 Oct;311(1):139-46. | |||||
36 | Functional characterization of human organic anion transporting polypeptide B (OATP-B) in comparison with liver-specific OATP-C. Pharm Res. 2001 Sep;18(9):1262-9. | |||||
37 | Predominant contribution of organic anion transporting polypeptide OATP-B (OATP2B1) to apical uptake of estrone-3-sulfate by human intestinal Caco-2 cells. Drug Metab Dispos. 2006 Aug;34(8):1423-31. | |||||
38 | Citrus juices inhibit the function of human organic anion-transporting polypeptide OATP-B. Drug Metab Dispos. 2005 Apr;33(4):518-23. | |||||
39 | Functional characterization of pH-sensitive organic anion transporting polypeptide OATP-B in human. J Pharmacol Exp Ther. 2004 Feb;308(2):438-45. | |||||
40 | Drug-drug interaction between pitavastatin and various drugs via OATP1B1. Drug Metab Dispos. 2006 Jul;34(7):1229-36. | |||||
41 | Classification of inhibitors of hepatic organic anion transporting polypeptides (OATPs): influence of protein expression on drug-drug interactions. J Med Chem. 2012 May 24;55(10):4740-63. | |||||
42 | Organic anion-transporting polypeptide B (OATP-B) and its functional comparison with three other OATPs of human liver. Gastroenterology. 2001 Feb;120(2):525-33. |
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