Compile Data Set for Download or QSAR
Report error Found 664 Enz. Inhib. hit(s) with all data for entry = 6480
TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131373BDBM131373(US8835472, 9.40)
Affinity DataIC50: 50nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131354BDBM131354(US8835472, 9.21)
Affinity DataIC50: 60nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131697BDBM131697(US8835472, 35.1)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131122BDBM131122(US8835472, 2.55)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131261BDBM131261(US8835472, 4.69)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131598BDBM131598(US8835472, 14.7)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131456BDBM131456(US8835472, 12.29)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131664BDBM131664(US8835472, 23.6)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131674BDBM131674(US8835472, 24.1)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131690BDBM131690(US8835472, 32.3)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131259BDBM131259(US8835472, 4.67)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131688BDBM131688(US8835472, 32.1)
Affinity DataIC50: 70nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131581BDBM131581(US8835472, 13.85)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131631BDBM131631(US8835472, 14.40)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131663BDBM131663(US8835472, 23.5)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131353BDBM131353(US8835472, 9.20)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131675BDBM131675(US8835472, 24.2)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131638BDBM131638(US8835472, 14.47)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131160BDBM131160(US8835472, 2.93)
Affinity DataIC50: 80nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131662BDBM131662(US8835472, 23.4)
Affinity DataIC50: 90nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131439BDBM131439(US8835472, 12.12)
Affinity DataIC50: 90nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131622BDBM131622(US8835472, 14.31)
Affinity DataIC50: 90nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131336BDBM131336(US8835472, 9.3)
Affinity DataIC50: 90nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131601BDBM131601(US8835472, 14.10)
Affinity DataIC50: 100nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131502BDBM131502(US8835472, 13.6)
Affinity DataIC50: 100nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131104BDBM131104(US8835472, 2.37)
Affinity DataIC50: 100nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131365BDBM131365(US8835472, 9.32)
Affinity DataIC50: 100nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131142BDBM131142(US8835472, 2.75)
Affinity DataIC50: 100nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131335BDBM131335(US8835472, 9.2)
Affinity DataIC50: 100nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131251BDBM131251(US8835472, 4.59)
Affinity DataIC50: 110nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131508BDBM131508(US8835472, 13.12)
Affinity DataIC50: 110nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131162BDBM131162(US8835472, 2.95)
Affinity DataIC50: 110nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131084BDBM131084(US8835472, 2.17)
Affinity DataIC50: 110nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131575BDBM131575(US8835472, 13.79)
Affinity DataIC50: 110nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131523BDBM131523(US8835472, 13.27)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131597BDBM131597(US8835472, 14.6)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131582BDBM131582(US8835472, 13.86)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131646BDBM131646(US8835472, 14.55)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131167BDBM131167(US8835472, 2.100)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131120BDBM131120(US8835472, 2.53)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131200BDBM131200(US8835472, 4.7)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131051BDBM131051(US8835472, 1.16)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131083BDBM131083(US8835472, 2.16)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131063BDBM131063(US8835472, 1.28)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131607BDBM131607(US8835472, 14.16)
Affinity DataIC50: 120nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131474BDBM131474(US8835472, 12.47)
Affinity DataIC50: 130nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131602BDBM131602(US8835472, 14.11)
Affinity DataIC50: 130nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131693BDBM131693(US8835472, 33.2)
Affinity DataIC50: 130nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131102BDBM131102(US8835472, 2.35)
Affinity DataIC50: 130nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 131551BDBM131551(US8835472, 13.55)
Affinity DataIC50: 130nMpH: 7.5Assay Description:Malonyl CoA formation by acetyl CoA carboxylases is stoichometrically linked to the consumption of ATP. ACC2 activity is measured in a NADH-linked ki...More data for this Ligand-Target Pair
In Depth
Date in BDB:
2/16/2015
Entry Details
US Patent

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