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Network of interactions between drugs (red spheres) and targets (blue spheres) is displayed above.
The red lines are used for the predicted interactions and the thickness of edges indicate the confidence score of predictions.

Data source: DrugBank-all; Query type: chemical; # of requested predictions: 20; Secondary interactions: no
Input drug 1: DB09238
No. Group Type Drug ID Drug Name SMILES
⇨ TargetHunter
Image
1 Approved;
Investigational
SmallMoleculeDrug DB09238 Manidipine Thumb


11 known interactions (targets) of input drug (DB09238): Manidipine
No. Gene UniProt ID Protein Name Pathway PDB
1 CACNA1C Q13936 Voltage-dependent L-type calcium channel subunit alpha-1C hsa04010; hsa04020; hsa04022; hsa04024; hsa04260; hsa04261; hsa04270; hsa04713; hsa04720; hsa04723; hsa04724; hsa04725; hsa04726; hsa04727; hsa04728; hsa04742; hsa04911; hsa04912; hsa04921; hsa04924; hsa04925; hsa04927; hsa04930; hsa04934; hsa05010; hsa05031; hsa05410; hsa05412; hsa05414 1T0J; 2BE6; 2F3Y; 2F3Z; 2LQC; 3G43; 3OXQ
2 CACNB4 O00305 Voltage-dependent L-type calcium channel subunit beta-4 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 1VYV; 2D46
3 CACNA1H O95180 Voltage-dependent T-type calcium channel subunit alpha-1H hsa04010; hsa04020; hsa04713; hsa04925; hsa04927; hsa04934 NA
4 CACNA1S Q13698 Voltage-dependent L-type calcium channel subunit alpha-1S hsa04010; hsa04020; hsa04022; hsa04024; hsa04260; hsa04261; hsa04270; hsa04723; hsa04725; hsa04726; hsa04727; hsa04911; hsa04912; hsa04921; hsa04924; hsa04925; hsa04927; hsa04934; hsa05010; hsa05410; hsa05412; hsa05414 2VAY
5 CACNA1G O43497 Voltage-dependent T-type calcium channel subunit alpha-1G hsa04010; hsa04020; hsa04713; hsa04925; hsa04927; hsa04930; hsa04934 NA
6 CACNA1D Q01668 Voltage-dependent L-type calcium channel subunit alpha-1D hsa04010; hsa04020; hsa04022; hsa04024; hsa04218; hsa04260; hsa04261; hsa04270; hsa04530; hsa04713; hsa04723; hsa04724; hsa04725; hsa04726; hsa04727; hsa04728; hsa04911; hsa04912; hsa04921; hsa04924; hsa04925; hsa04927; hsa04930; hsa04934; hsa04973; hsa05010; hsa05031; hsa05410; hsa05412; hsa05414 3LV3
7 CACNB3 P54284 Voltage-dependent L-type calcium channel subunit beta-3 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA
8 CACNA1I Q9P0X4 Voltage-dependent T-type calcium channel subunit alpha-1I hsa04010; hsa04020; hsa04713; hsa04925; hsa04927; hsa04934 NA
9 CACNA1F O60840 Voltage-dependent L-type calcium channel subunit alpha-1F hsa04010; hsa04020; hsa04022; hsa04024; hsa04260; hsa04261; hsa04270; hsa04723; hsa04725; hsa04726; hsa04727; hsa04911; hsa04912; hsa04921; hsa04924; hsa04925; hsa04927; hsa04934; hsa05010; hsa05410; hsa05412; hsa05414 NA
10 CACNB2 Q08289 Voltage-dependent L-type calcium channel subunit beta-2 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA
11 CACNB1 Q02641 Voltage-dependent L-type calcium channel subunit beta-1 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA


20 predicted interactions (targets) of input drug (DB09238): Manidipine
No. Gene UniProt ID Protein Name Pathway PDB Confidence score
1 CACNA1B Q00975 Voltage-dependent N-type calcium channel subunit alpha-1B hsa04010; hsa04020; hsa04721; hsa04723; hsa04725; hsa04726; hsa04727; hsa04728; hsa04930; hsa05032; hsa05033 2LCM 62.1%
2 CACNA2D1 P54289 Voltage-dependent calcium channel subunit alpha-2/delta-1 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA 52.1%
3 CACNA1A O00555 Voltage-dependent P/Q-type calcium channel subunit alpha-1A hsa04010; hsa04020; hsa04721; hsa04723; hsa04724; hsa04725; hsa04726; hsa04727; hsa04728; hsa04730; hsa04742; hsa04930; hsa05032; hsa05033 3BXK 50.2%
4 CACNG1 Q06432 Voltage-dependent calcium channel gamma-1 subunit hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA 47.7%
5 CACNA2D2 Q9NY47 Voltage-dependent calcium channel subunit alpha-2/delta-2 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA 45.7%
6 CACNB1 Q6TME4 Voltage-dependent L-type calcium channel subunit beta-1 NA NA 42.6%
7 CACNA2D3 Q8IZS8 Voltage-dependent calcium channel subunit alpha-2/delta-3 hsa04010; hsa04260; hsa04261; hsa04921; hsa05410; hsa05412; hsa05414 NA 42.1%
8 KCNJ11 Q14654 ATP-sensitive inward rectifier potassium channel 11 hsa04911; hsa04930 NA 37.6%
9 SCN5A Q14524 Sodium channel protein type 5 subunit alpha hsa04261 2KBI; 2L53; 4DCK; 4DJC; 4JQ0; 4OVN 34.9%
10 NR3C2 P08235 Mineralocorticoid receptor hsa04960 1Y9R; 1YA3; 2A3I; 2AA2; 2AA5; 2AA6; 2AA7; 2AAX; 2AB2; 2ABI; 2OAX; 3VHU; 3VHV; 3WFF; 3WFG; 4PF3; 4TNT 31.1%
11 CALM1 P0DP23 Calmodulin NA 30.0%
12 KCNH2 Q12809 Potassium voltage-gated channel subfamily H member 2 NA 1BYW; 1UJL; 2L0W; 2L1M; 2L4R; 2LE7; 4HP9; 4HQA 28.5%
13 TRPM8 Q7Z2W7 Transient receptor potential cation channel subfamily M member 8 hsa04750 NA 28.3%
14 NR1I2 O75469 Nuclear receptor subfamily 1 group I member 2 NA 28.1%
15 KCNN2 Q9H2S1 Small conductance calcium-activated potassium channel protein 2 hsa04726; hsa04911; hsa04976 NA 27.2%
16 NOS3 P29474 Nitric oxide synthase, endothelial hsa00220; hsa00330; hsa01100; hsa04020; hsa04022; hsa04066; hsa04071; hsa04151; hsa04370; hsa04371; hsa04611; hsa04915; hsa04921; hsa04926; hsa04931; hsa04933; hsa05418 1M9J; 1M9K; 1M9M; 1M9Q; 1M9R; 1NIW; 2LL7; 2MG5; 3EAH; 3NOS; 4D1O; 4D1P 27.1%
17 CYP11B2 P19099 Cytochrome P450 11B2, mitochondrial hsa00140; hsa01100; hsa04925 4DVQ; 4FDH; 4ZGX 26.7%
18 GLRA1 P23415 Glycine receptor subunit alpha-1 hsa04080 1MOT; 1VRY; 2M6B; 2M6I; 4X5T 26.4%
19 PDE1A P54750 Calcium/calmodulin-dependent 3',5'-cyclic nucleotide phosphodiesterase 1A hsa00230; hsa04020; hsa04740; hsa04742; hsa04924; hsa05032 1LXQ 26.1%
20 TRPA1 O75762 Transient receptor potential cation channel subfamily A member 1 hsa04750 3J9P 25.9%



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Reference:  Hongchun Li, Fen Pei, D. Lansing Taylor and Ivet Bahar. (2020) QuartataWeb: Integrated Chemical–Protein-Pathway Mapping for Polypharmacology and Chemogenomics. Bioinformatics 36(12), 3935–3937.

Contact:

The QuartataWeb server is maintained by the Bahar Lab at the Department of Computational & Systems Biology at the University of Pittsburgh, School of Medicine, and sponsored by the NIH awards P41 GM103712 and P01 DK096990; and by the Li Lab at Research Center for Computer-Aided Drug Discovery at Shenzhen Institutes of Advanced Technology, CAS.

For questions and comments please contact Hongchun Li.