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13331-23-2 靶点实验数据

HepG2 Cytotoxicity Assay Measured in Cell-Based System Using Plate Reader - 7071-02_Inhibitor_Dose_DryPowder_Activity_Set16
来源:ChEMBL 靶标:Prostaglandin E2 receptor EP3 subtype
External ID: CHEMBL764948
Protocol: N/A
Comment: Journal: Bioorg. Med. Chem. Lett.
Year: 2001
Volume: 11
Issue: 5
First Page: 747
Last Page: 749
DOI: 10.1016/s0960-894x(01)00056-7

Target ChEMBL ID: CHEMBL3710
ChEMBL Target Name: Prostanoid EP3 receptor
ChEMBL Target Type: SINGLE PROTEIN - Target is a single protein chain
Relationship Type: H - Homologous protein target assigned
Confidence: Homologous single protein target assigned
Standard TypeStandard RelationStandard ValueStandard Units
Residual binding=25%
Residual binding=8%
Residual binding=5%
Residual binding=91%
Residual binding=77%
Residual binding=74%
Residual binding=48%
Residual binding=61%
Residual binding=54%
Residual binding=84%
Residual binding=100%
Residual binding=27%
Residual binding=84%
Residual binding=96%
Residual binding=55%
Residual binding=89%
Residual binding=93%
HepG2 Cytotoxicity Assay Measured in Cell-Based System Using Plate Reader - 7071-02_Inhibitor_Dose_DryPowder_Activity_Set16
来源:ChEMBL 靶标:Beta-lactamase
External ID: CHEMBL649554
Protocol: N/A
Comment: Compounds with activity <= 10uM or explicitly reported as active by ChEMBL are flagged as active in this PubChem assay presentation.

Journal: J. Med. Chem.
Year: 1998
Volume: 41
Issue: 23
First Page: 4577
Last Page: 4586
DOI: 10.1021/jm980343w

Target ChEMBL ID: CHEMBL2026
ChEMBL Target Name: Beta-lactamase AmpC
ChEMBL Target Type: SINGLE PROTEIN - Target is a single protein chain
Relationship Type: H - Homologous protein target assigned
Confidence: Homologous single protein target assigned
PubChem Standard ValueStandard TypeStandard RelationStandard ValueStandard Units
7.3Ki=7300nM
10.5Ki=10500nM
100Ki>100000nM
0.027Ki=27nM
100Ki>100000nM
2.9Ki=2900nM
0.2Ki=200nM
5.9Ki=5900nM
100Ki>100000nM
10.9Ki=10900nM
53.4Ki=53400nM
7Ki=7000nM
5.4Ki=5400nM
100Ki>100000nM
22.1Ki=22100nM
2.5Ki=2500nM
0.5Ki=500nM
3.8Ki=3800nM
3Ki=3000nM
3.9Ki=3900nM