Compile Data Set for Download or QSAR
Report error Found 485 Enz. Inhib. hit(s) with all data for entry = 6553
TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138764BDBM138764(US8877741, 2.90)
Affinity DataIC50: 9nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138632BDBM138632(US8877741, 1.110)
Affinity DataIC50: 23nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138626BDBM138626(US8877741, 1.104)
Affinity DataIC50: 24nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138743BDBM138743(US8877741, 2.76 | US8877741, 2.69)
Affinity DataIC50: 24nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138674BDBM138674(US8877741, 2.1 | US8877741, 524)
Affinity DataIC50: 25nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138660BDBM138660(US8877741, 1.138)
Affinity DataIC50: 26nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138599BDBM138599(US8877741, 1.77)
Affinity DataIC50: 29nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138597BDBM138597(US8877741, 1.75)
Affinity DataIC50: 30nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138893BDBM138893(US8877741, 9.29)
Affinity DataIC50: 30nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138649BDBM138649(US8877741, 1.127)
Affinity DataIC50: 31nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138642BDBM138642(US8877741, 1.120)
Affinity DataIC50: 32nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138838BDBM138838(US8877741, 5.3)
Affinity DataIC50: 34nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138972BDBM138972(US8877741, 10.19)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138969BDBM138969(US8877741, 10.16)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138755BDBM138755(US8877741, 2.81)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138734BDBM138734(US8877741, 2.60)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138735BDBM138735(US8877741, 2.61)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138880BDBM138880(US8877741, 9.16)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138928BDBM138928(US8877741, 9.64)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138946BDBM138946(US8877741, 9.82)
Affinity DataIC50: 35nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138841BDBM138841(US8877741, 5.6)
Affinity DataIC50: 36nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138661BDBM138661(US8877741, 1.139)
Affinity DataIC50: 37nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138794BDBM138794(US8877741, 2.120)
Affinity DataIC50: 37nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138640BDBM138640(US8877741, 1.118)
Affinity DataIC50: 39nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138749BDBM138749(US8877741, 2.75)
Affinity DataIC50: 39nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138825BDBM138825(US8877741, 4.1 | US8877741, 675)
Affinity DataIC50: 39nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138864BDBM138864(US8877741, 9.1 | US8877741, 714)
Affinity DataIC50: 39nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138892BDBM138892(US8877741, 9.28)
Affinity DataIC50: 40nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138924BDBM138924(US8877741, 9.60)
Affinity DataIC50: 40nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138871BDBM138871(US8877741, 9.7)
Affinity DataIC50: 40nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138917BDBM138917(US8877741, 9.53)
Affinity DataIC50: 40nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138767BDBM138767(US8877741, 2.93)
Affinity DataIC50: 40nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138879BDBM138879(US8877741, 9.15)
Affinity DataIC50: 40nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138643BDBM138643(US8877741, 1.121)
Affinity DataIC50: 41nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138654BDBM138654(US8877741, 1.132)
Affinity DataIC50: 41nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138866BDBM138866(US8877741, 9.2)
Affinity DataIC50: 41nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138630BDBM138630(US8877741, 1.108)
Affinity DataIC50: 42nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138915BDBM138915(US8877741, 9.51)
Affinity DataIC50: 42nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138636BDBM138636(US8877741, 1.147 | US8877741, 1.114)
Affinity DataIC50: 43nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138795BDBM138795(US8877741, 2.121)
Affinity DataIC50: 43nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138926BDBM138926(US8877741, 9.62)
Affinity DataIC50: 44nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138800BDBM138800(US8877741, 2.126)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138887BDBM138887(US8877741, 9.23)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138935BDBM138935(US8877741, 9.71)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138738BDBM138738(US8877741, 2.64)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138937BDBM138937(US8877741, 9.73)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138948BDBM138948(US8877741, 9.84)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138967BDBM138967(US8877741, 10.14)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 139017BDBM139017(US8877741, 14.2)
Affinity DataIC50: 45nMpH: 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:
4/20/2015
Entry Details
US Patent

TargetAcetyl-CoA carboxylase 2(Human)
Boehringer Ingelheim International

US Patent
LigandChemical structure of BindingDB Monomer ID 138741BDBM138741(US8877741, 2.67)
Affinity DataIC50: 46nMpH: 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:
4/20/2015
Entry Details
US Patent

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