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Assay Detail

CHEMBL5733214

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Binding
Bub1 kinase assay: Bub1-inhibitory activities of compounds described in the present invention were quantified using a time-resolved fluorescence energy transfer (TR-FRET) kinase assay which measures phosphorylation of the synthetic peptide Biotin-Ahx-VLLPKKSFAEPG (SEQ ID No.1) (C-terminus in amide form), purchased from e.g. Biosyntan (Berlin, Germany) by the (recombinant) catalytic domain of human Bub1 (amino acids 704-1085), expressed in Hi5 insect cells with an N-terminal His6-tag and purified by affinity-(Ni-NTA) and size exclusion chromatography.In a typical assay 11 different concentrations of each compound (0.1 nM, 0.33 nM, 1.1 nM, 3.8 nM, 13 nM, 44 nM, 0.15 μM, 0.51 μM, 1.7 μM, 5.9 μM and 20 μM) were tested in duplicate within the same microtiter plate. To this end, 100-fold concentrated compound solutions (in DMSO) were previously prepared by serial dilution (1:3.4) of 2 mM stocks in a clear low volume 384-well source microtiter plate (Greiner Bio-One, Frickenhausen, Germany), from which 50 nl of compounds were transferred into a black low volume test microtiter plate from the same supplier. Subsequently, 2 μL of Bub1 (the final concentration of Bub1 was adjusted depending on the activity of the enzyme lot in order to be within the linear dynamic range of the assay: typically ˜200 ng/mL were used) in aqueous assay buffer [50 mM Tris/HCl pH 7.5, 10 mM magnesium chloride (MgCl2), 200 mM potassium chloride (KCL), 1.0 mM dithiothreitol (DTT), 0.1 mM sodium ortho-vanadate, 1% (v/v) glycerol, 0.01% (w/v) bovine serum albumine (BSA), 0.005% (v/v) Trition X-100 (Sigma), 1× Complete EDTA-free protease inhibitor mixture (Roche)] were added to the compounds in the test plate and the mixture was incubated for 15 min at 22° C. to allow pre-equilibration of the putative enzyme-inhibitor complexes before the start of the kinase reaction, which was initiated by the addition of 3 μL 1.67-fold concentrated solution (in assay buffer) of adenosine-tri-phosphate (ATP, 10 μM final concentration) and peptide substrate (1 μM final concentration). The resulting mixture (5 μL final volume) was incubated at 22° C. during 60 min. and the reaction was stopped by the addition of 5 μL of an aqueous EDTA-solution (50 mM EDTA, in 100 mM HEPES pH 7.5 and 0.2% (w/v) bovine serum albumin) which also contained the TR-FRET detection reagents (0.2 μM streptavidin-XL665 [Cisbio Bioassays, Codolet, France] and 1 nM anti-phosho-Serine antibody [Merck Millipore, cat. #35-002] and 0.4 nM LANCE EU-W1024 labeled anti-mouse IgG antibody [Perkin-Elmer, product no. AD0077, alternatively a Terbium-cryptate-labeled anti-mouse IgG antibody from Cisbio Bioassays can be used]). The stopped reaction mixture was further incubated 1 h at 22° C. in order to allow the formation of complexes between peptides and detection reagents. Subsequently, the amount of product was evaluated by measurement of the resonance energy transfer from the Eu-chelate-antibody complex recognizing the Phosphoserine residue to the streptavidin-XL 665 bound to the biotin moiety of the peptide. To this end, the fluorescence emissions at 620 nm and 665 nm after excitation at 330-350 nm were measured in a TR-FRET plate reader, e.g. a Rubystar or Pherastar (both from BMG Labtechnologies, Offenburg, Germany) or a Viewlux (Perkin-Elmer) and the ratio of the emissions (665 nm/622 nm) was taken as indicator for the amount of phosphorylated substrate. The data were normalised using two sets of control wells for high (=enzyme reaction without inhibitor=0%=Minimum inhibition) and low (=all assay components without enzyme=100%=Maximum inhibition) Bub1 activity. IC50 values were calculated by fitting the normalized inhibition data to a 4-parameter logistic equation (Minimum, Maximum, IC50, Hill; Y=Max+(Min−Max)/(1+(X/IC50)Hill)).
885
Total Activities
283
Compounds Tested
3
Activity Types
0
Assay Parameters

Assay Information

Assay Type Binding
Organism Homo sapiens
Confidence 9 — Direct single protein target
Curated By Autocuration

Publication

3-amino-1,5,6,7-tetrahydro-4H-indol-4-ones
(2019)

Activity Statistics

Type Count Avg pChEMBL Best pChEMBL
IC50 295 7.51 8.52
kon 295 - -
k_off 295 - -

Compounds Tested

Compound Name Phase Activities Best pChEMBL
CHEMBL6023600 3 8.52
CHEMBL5882408 9 8.52
CHEMBL5758090 9 8.40
CHEMBL5966205 9 8.40
CHEMBL5905008 3 8.40
CHEMBL5970251 3 8.40
CHEMBL5904438 3 8.30
CHEMBL6012166 3 8.30
CHEMBL5912062 3 8.30
CHEMBL5878626 3 8.30
CHEMBL6065158 3 8.30
CHEMBL5786113 3 8.30
CHEMBL5758924 3 8.30
CHEMBL5839827 3 8.22
CHEMBL5948373 3 8.22
CHEMBL5841114 9 8.15
CHEMBL6013574 3 8.15
CHEMBL5742524 3 8.15
CHEMBL5941803 3 8.15
CHEMBL5805627 3 8.15
CHEMBL5782619 3 8.15
CHEMBL5911381 3 8.15
CHEMBL5962023 3 8.15
CHEMBL5999271 3 8.15
CHEMBL5892044 3 8.15
CHEMBL5918489 3 8.15
CHEMBL5988684 3 8.10
CHEMBL5880828 3 8.10
CHEMBL6030839 3 8.10
CHEMBL5911774 3 8.10

Activity Data

Compound Name Type Rel. Value Units pChEMBL
CHEMBL5882408 IC50 = 3.0 nM 8.52
CHEMBL6023600 IC50 = 3.0 nM 8.52
CHEMBL5966205 IC50 = 4.0 nM 8.40
CHEMBL5758090 IC50 = 4.0 nM 8.40
CHEMBL5905008 IC50 = 4.0 nM 8.40
CHEMBL5970251 IC50 = 4.0 nM 8.40
CHEMBL6012166 IC50 = 5.0 nM 8.30
CHEMBL5912062 IC50 = 5.0 nM 8.30
CHEMBL6065158 IC50 = 5.0 nM 8.30
CHEMBL5758924 IC50 = 5.0 nM 8.30
CHEMBL5878626 IC50 = 5.0 nM 8.30
CHEMBL5786113 IC50 = 5.0 nM 8.30
CHEMBL5904438 IC50 = 5.0 nM 8.30
CHEMBL5839827 IC50 = 6.0 nM 8.22
CHEMBL5948373 IC50 = 6.0 nM 8.22
CHEMBL5941803 IC50 = 7.0 nM 8.15
CHEMBL5962023 IC50 = 7.0 nM 8.15
CHEMBL5966205 IC50 = 7.0 nM 8.15
CHEMBL6013574 IC50 = 7.0 nM 8.15
CHEMBL5892044 IC50 = 7.0 nM 8.15
CHEMBL5841114 IC50 = 7.0 nM 8.15
CHEMBL5911381 IC50 = 7.0 nM 8.15
CHEMBL5782619 IC50 = 7.0 nM 8.15
CHEMBL5805627 IC50 = 7.0 nM 8.15
CHEMBL5999271 IC50 = 7.0 nM 8.15
CHEMBL5742524 IC50 = 7.0 nM 8.15
CHEMBL5918489 IC50 = 7.0 nM 8.15
CHEMBL5972315 IC50 = 8.0 nM 8.10
CHEMBL5880828 IC50 = 8.0 nM 8.10
CHEMBL5821318 IC50 = 8.0 nM 8.10
CHEMBL5988684 IC50 = 8.0 nM 8.10
CHEMBL6030839 IC50 = 8.0 nM 8.10
CHEMBL5762414 IC50 = 8.0 nM 8.10
CHEMBL5834266 IC50 = 8.0 nM 8.10
CHEMBL5924503 IC50 = 8.0 nM 8.10
CHEMBL5880407 IC50 = 8.0 nM 8.10
CHEMBL5911774 IC50 = 8.0 nM 8.10
CHEMBL5891622 IC50 = 8.0 nM 8.10
CHEMBL5768497 IC50 = 8.0 nM 8.10
CHEMBL5854911 IC50 = 9.0 nM 8.05
CHEMBL5841114 IC50 = 9.0 nM 8.05
CHEMBL5883303 IC50 = 9.0 nM 8.05
CHEMBL5816396 IC50 = 9.0 nM 8.05
CHEMBL5975779 IC50 = 9.0 nM 8.05
CHEMBL5805990 IC50 = 9.0 nM 8.05
CHEMBL5820686 IC50 = 10.0 nM 8.00
CHEMBL5758090 IC50 = 10.0 nM 8.00
CHEMBL5922972 IC50 = 10.0 nM 8.00
CHEMBL5786281 IC50 = 10.0 nM 8.00
CHEMBL5781606 IC50 = 10.0 nM 8.00