General Information of Drug Combination (ID: DCAWMT1)

Drug Combination Name
Trifluoperazine Tetracycline
Indication
Disease Entry Status REF
Chronic myelogenous leukemia Investigative [1]
Component Drugs Trifluoperazine   DMKBYWI Tetracycline   DMZA017
Small molecular drug Small molecular drug
2D MOL 2D MOL
3D MOL 3D MOL
High-throughput Screening Result Testing Cell Line: KBM-7
Zero Interaction Potency (ZIP) Score: 16.07
Bliss Independence Score: 16.07
Loewe Additivity Score: 29.9
LHighest Single Agent (HSA) Score: 29.91

Molecular Interaction Atlas of This Drug Combination

Molecular Interaction Atlas (MIA)
Indication(s) of Trifluoperazine
Disease Entry ICD 11 Status REF
Anxiety N.A. Approved [2]
Schizophrenia 6A20 Approved [3]
Trifluoperazine Interacts with 1 DTT Molecule(s)
DTT Name DTT ID UniProt ID Mode of Action REF
Calmodulin (CALM) TTV3NH6 CALM1_HUMAN; CALM2_HUMAN; CALM3_HUMAN Inhibitor [7]
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Trifluoperazine Interacts with 1 DTP Molecule(s)
DTP Name DTP ID UniProt ID Mode of Action REF
P-glycoprotein 1 (ABCB1) DTUGYRD MDR1_HUMAN Substrate [8]
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Trifluoperazine Interacts with 2 DME Molecule(s)
DME Name DME ID UniProt ID Mode of Action REF
Cytochrome P450 1A2 (CYP1A2) DEJGDUW CP1A2_HUMAN Metabolism [9]
Dimethylaniline oxidase 2 (FMO2) DEIASEZ FMO2_HUMAN Metabolism [10]
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Trifluoperazine Interacts with 7 DOT Molecule(s)
DOT Name DOT ID UniProt ID Mode of Action REF
Flavin-containing monooxygenase 2 (FMO2) OTUJUL9S FMO2_HUMAN Increases Oxidation [10]
ATP-dependent translocase ABCB1 (ABCB1) OTEJROBO MDR1_HUMAN Increases Activity [11]
E3 ubiquitin-protein ligase parkin (PRKN) OTJBN41W PRKN_HUMAN Affects Localization [12]
Stonin-2 (STON2) OT01JHHE STON2_HUMAN Decreases Expression [13]
D(3) dopamine receptor (DRD3) OT0OFFKB DRD3_HUMAN Increases ADR [14]
D(4) dopamine receptor (DRD4) OTAJTO7N DRD4_HUMAN Increases ADR [14]
D(2) dopamine receptor (DRD2) OTBLXKEG DRD2_HUMAN Increases ADR [14]
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⏷ Show the Full List of 7 DOT(s)
Indication(s) of Tetracycline
Disease Entry ICD 11 Status REF
Acne vulgaris ED80 Approved [4]
Actinomycosis N.A. Approved [4]
Acute gonococcal cervicitis N.A. Approved [4]
Acute gonococcal epididymo-orchitis N.A. Approved [4]
Bacterial infection 1A00-1C4Z Approved [5]
Bronchitis CA20 Approved [4]
Brucellosis N.A. Approved [4]
Lymphogranuloma venereum N.A. Approved [4]
Ornithosis N.A. Approved [4]
Pneumonia CA40 Approved [4]
Q fever N.A. Approved [4]
Relapsing fever N.A. Approved [4]
Rickettsialpox N.A. Approved [4]
Rocky mountain spotted fever N.A. Approved [4]
Syphilis N.A. Approved [4]
Trachoma N.A. Approved [4]
Typhus N.A. Approved [4]
Urinary tract infection GC08 Approved [4]
Yaws N.A. Approved [4]
Pelvic inflammatory disease GA05 Investigative [4]
Sinusitis CA0A.Z Investigative [4]
Tetracycline Interacts with 1 DTT Molecule(s)
DTT Name DTT ID UniProt ID Mode of Action REF
Staphylococcus 30S ribosomal subunit (Stap-coc pbp2) TTQ8KVI F4NA87_STAAU Binder [16]
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Tetracycline Interacts with 5 DTP Molecule(s)
DTP Name DTP ID UniProt ID Mode of Action REF
P-glycoprotein 1 (ABCB1) DTUGYRD MDR1_HUMAN Substrate [8]
Breast cancer resistance protein (ABCG2) DTI7UX6 ABCG2_HUMAN Substrate [17]
Organic anion transporter 2 (SLC22A7) DT0OC1Q S22A7_HUMAN Substrate [18]
Organic anion transporter 3 (SLC22A8) DTVP67E S22A8_HUMAN Substrate [18]
Organic anion transporter 4 (SLC22A11) DT06JWZ S22AB_HUMAN Substrate [18]
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Tetracycline Interacts with 30 DOT Molecule(s)
DOT Name DOT ID UniProt ID Mode of Action REF
Solute carrier family 22 member 7 (SLC22A7) OTKTNH1W S22A7_HUMAN Increases Transport [19]
Organic anion transporter 3 (SLC22A8) OT8BY933 S22A8_HUMAN Increases Uptake [18]
Glutathione S-transferase Mu 3 (GSTM3) OTLA2WJT GSTM3_HUMAN Decreases Activity [20]
Nuclear protein 1 (NUPR1) OT4FU8C0 NUPR1_HUMAN Increases Expression [15]
Alpha-1-antichymotrypsin (SERPINA3) OT9BP2S0 AACT_HUMAN Increases Expression [15]
Inhibin beta E chain (INHBE) OTOI2NYG INHBE_HUMAN Increases Expression [15]
AP-1 complex subunit sigma-1A (AP1S1) OTQ2H8DN AP1S1_HUMAN Decreases Expression [15]
Fibronectin type III domain-containing protein 4 (FNDC4) OTOQK0WK FNDC4_HUMAN Increases Expression [15]
Protein DEPP1 (DEPP1) OTB36PHJ DEPP1_HUMAN Increases Expression [15]
Alternative prion protein (PRNP) OTE85L1Q APRIO_HUMAN Affects Binding [21]
Claudin-11 (CLDN11) OTNN6UTL CLD11_HUMAN Decreases Expression [22]
Stromelysin-1 (MMP3) OTGBI74Z MMP3_HUMAN Decreases Activity [23]
Neutrophil collagenase (MMP8) OTZXH19L MMP8_HUMAN Decreases Activity [23]
Integrin alpha-3 (ITGA3) OTBCH21D ITA3_HUMAN Decreases Expression [22]
Mitogen-activated protein kinase 3 (MAPK3) OTCYKGKO MK03_HUMAN Decreases Phosphorylation [24]
Mitogen-activated protein kinase 1 (MAPK1) OTH85PI5 MK01_HUMAN Decreases Phosphorylation [24]
Collagenase 3 (MMP13) OTY8BZIE MMP13_HUMAN Decreases Activity [23]
Gap junction alpha-8 protein (GJA8) OTZCPRKD CXA8_HUMAN Decreases Expression [22]
Microsomal triglyceride transfer protein large subunit (MTTP) OTNUVSDT MTP_HUMAN Decreases Expression [25]
Claudin-15 (CLDN15) OT9K0KI7 CLD15_HUMAN Decreases Expression [22]
Claudin-8 (CLDN8) OT7IIWXG CLD8_HUMAN Decreases Expression [22]
Claudin-2 (CLDN2) OTRF3D6Y CLD2_HUMAN Decreases Expression [22]
Claudin-10 (CLDN10) OT2CVAKY CLD10_HUMAN Decreases Expression [22]
Peroxisomal bifunctional enzyme (EHHADH) OTBAAHL5 ECHP_HUMAN Decreases Expression [25]
Neurogenic locus notch homolog protein 4 (NOTCH4) OTBCHB61 NOTC4_HUMAN Decreases Expression [22]
Gap junction delta-2 protein (GJD2) OTDR288R CXD2_HUMAN Decreases Expression [22]
Neurogenic locus notch homolog protein 3 (NOTCH3) OTMVVA7F NOTC3_HUMAN Decreases Expression [22]
Solute carrier family 22 member 6 (SLC22A6) OTKRCBVM S22A6_HUMAN Increases Export [18]
ATP-binding cassette sub-family C member 4 (ABCC4) OTO27PAL MRP4_HUMAN Increases Transport [26]
Organic anion transporter 7 (SLC22A9) OTO4BJCC S22A9_HUMAN Increases Export [18]
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⏷ Show the Full List of 30 DOT(s)

References

1 CheMBL Affinity Phenotypic Cellular Interaction Assay ID: CHEMBL1125966
2 Trifluoperazine FDA Label
3 Drugs@FDA. U.S. Food and Drug Administration. U.S. Department of Health & Human Services. 2015
4 Tetracycline FDA Label
5 How many modes of action should an antibiotic have Curr Opin Pharmacol. 2008 Oct;8(5):564-73.
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7 Inhibitory effect of jujuboside A on glutamate-mediated excitatory signal pathway in hippocampus. Planta Med. 2003 Aug;69(8):692-5.
8 Mammalian drug efflux transporters of the ATP binding cassette (ABC) family in multidrug resistance: A review of the past decade. Cancer Lett. 2016 Jan 1;370(1):153-64.
9 Psychotropic Medications Metabolized by Cytochromes P450 (CYP) 1A2 Enzyme and Relevant Drug Interactions: Review of Articles
10 Human FMO2-based microbial whole-cell catalysts for drug metabolite synthesis. Microb Cell Fact. 2015 Jun 12;14:82.
11 Characterization of the ATPase activity of the Mr 170,000 to 180,000 membrane glycoprotein (P-glycoprotein) associated with multidrug resistance in K562/ADM cells. Cancer Res. 1988 Sep 1;48(17):4926-32.
12 Rescue of Pink1 Deficiency by Stress-Dependent Activation of Autophagy. Cell Chem Biol. 2017 Apr 20;24(4):471-480.e4. doi: 10.1016/j.chembiol.2017.03.005. Epub 2017 Mar 30.
13 Stonin 2 activates lysosomal-mTOR axis for cell survival in oral cancer. Toxicol In Vitro. 2023 Apr;88:105561. doi: 10.1016/j.tiv.2023.105561. Epub 2023 Jan 23.
14 ADReCS-Target: target profiles for aiding drug safety research and application. Nucleic Acids Res. 2018 Jan 4;46(D1):D911-D917. doi: 10.1093/nar/gkx899.
15 Determination of phospholipidosis potential based on gene expression analysis in HepG2 cells. Toxicol Sci. 2007 Mar;96(1):101-14.
16 The glycylcyclines: a comparative review with the tetracyclines. Drugs. 2004;64(1):63-88.
17 Arginine-482 is not essential for transport of antibiotics, primary bile acids and unconjugated sterols by the human breast cancer resistance protein (ABCG2). Biochem J. 2005 Jan 15;385(Pt 2):419-26.
18 Human organic anion transporters mediate the transport of tetracycline. Jpn J Pharmacol. 2002 Jan;88(1):69-76.
19 Transport mechanism and substrate specificity of human organic anion transporter 2 (hOat2 [SLC22A7]). J Pharm Pharmacol. 2005 May;57(5):573-8.
20 Inhibition of glutathione S-transferases by antimalarial drugs possible implications for circumventing anticancer drug resistance. Int J Cancer. 2002 Feb 10;97(5):700-5.
21 Tetracycline affects abnormal properties of synthetic PrP peptides and PrP(Sc) in vitro. J Mol Biol. 2000 Jul 28;300(5):1309-22. doi: 10.1006/jmbi.2000.3840.
22 Effects of residual levels of tetracycline on the barrier functions of human intestinal epithelial cells. Food Chem Toxicol. 2017 Nov;109(Pt 1):253-263. doi: 10.1016/j.fct.2017.09.004. Epub 2017 Sep 4.
23 Synthesis and in vitro evaluation of targeted tetracycline derivatives: effects on inhibition of matrix metalloproteinases. Bioorg Med Chem. 2007 Mar 15;15(6):2368-74. doi: 10.1016/j.bmc.2007.01.026. Epub 2007 Jan 19.
24 Increased hepatic Fatty Acid uptake and esterification contribute to tetracycline-induced steatosis in mice. Toxicol Sci. 2015 Jun;145(2):273-82. doi: 10.1093/toxsci/kfv049. Epub 2015 Mar 4.
25 Advantageous use of HepaRG cells for the screening and mechanistic study of drug-induced steatosis. Toxicol Appl Pharmacol. 2016 Jul 1;302:1-9. doi: 10.1016/j.taap.2016.04.007. Epub 2016 Apr 16.
26 Multichannel liquid chromatography-tandem mass spectrometry cocktail method for comprehensive substrate characterization of multidrug resistance-associated protein 4 transporter. Pharm Res. 2007 Dec;24(12):2281-96.