Report error Found 120 Enz. Inhib. hit(s) with all data for entry = 11837
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 0.200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 0.950nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 1.60nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 5.01nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 5.83nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 5.84nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 6.34nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 9.20nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 10.5nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 10.9nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 11.2nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 11.3nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 11.7nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 13nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 14.8nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 15.8nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 18.2nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 21.2nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 22.4nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 24.9nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 30.6nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 60.3nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 74.4nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 108nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 144nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 174nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
TargetCalcium release-activated calcium channel protein 1(Human)
Texas A&M University System
US Patent
Texas A&M University System
US Patent
Affinity DataIC50: 200nMAssay Description:Using the GFP-NFAT translocation assay method, the inhibitory activity of the selected compounds at 200 μM concentration was evaluated. As demon...More data for this Ligand-Target Pair
