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Assay Detail

CHEMBL5737042

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Binding
TYK2 JH2 Domain Binding Assay: Binding constants for compounds of the present invention against the JH2 domain were determined by the following protocol for a KINOMEscan® assay (DiscoveRx). A fusion protein of a partial length construct of human TYK2 (JH2domain-pseudokinase) (amino acids G556 to D888 based on reference sequence NP_003322.3) and the DNA binding domain of NFkB was expressed in transiently transfected HEK293 cells. From these HEK 293 cells, extracts were prepared in M-PER extraction buffer (Pierce) in the presence of Protease Inhibitor Cocktail Complete (Roche) and Phosphatase Inhibitor Cocktail Set II (Merck) per manufacturers' instructions. The TYK2(JH2domain-pseudokinase) fusion protein was labeled with a chimeric double-stranded DNA tag containing the NFkB binding site (5′-GGGAATTCCC-3′) fused to an amplicon for qPCR readout, which was added directly to the expression extract (the final concentration of DNA-tag in the binding reaction is 0.1 nM).Streptavidin-coated magnetic beads (Dynal M280) were treated with a biotinylated small molecule ligand for 30 minutes at room temperature to generate affinity resins the binding assays. The liganded beads were blocked with excess biotin and washed with blocking buffer (SeaBlock (Pierce), 1% BSA, 0.05% Tween 20, 1 mM DTT) to remove unbound ligand and to reduce nonspecific binding.The binding reaction was assembled by combining 16 μl of DNA-tagged kinase extract, 3.8 μl liganded affinity beads, and 0.18 μl test compound (PBS/0.05% Tween 20/10 mM DTT/0.1% BSA/2 μg/ml sonicated salmon sperm DNA)]. Extracts were used directly in binding assays without any enzyme purification steps at a ≥10,000-fold overall stock dilution (final DNA-tagged enzyme concentration <0.1 nM). Extracts were loaded with DNA-tag and diluted into the binding reaction in a two step process. First extracts were diluted 1:100 in 1× binding buffer (PBS/0.05% Tween 20/10 mM DTT/0.1% BSA/2 μg/ml sonicated salmon sperm DNA) containing 10 nM DNA-tag. This dilution was allowed to equilibrate at room temperature for 15 minutes and then subsequently diluted 1:100 in 1× binding buffer. Test compounds were prepared as 111× stocks in 100% DMSO. Kds were determined using an 11-point 3-fold compound dilution series with three DMSO control points. All compounds for Kd measurements are distributed by acoustic transfer (non-contact dispensing) in 100% DMSO. The compounds were then diluted directly into the assays such that the final concentration of DMSO was 0.9%. All reactions performed in polypropylene 384-well plates. Each was a final volume of 0.02 mL. Assays were incubated with shaking for 1 hour at room temperature. Then the beads were pelleted and washed with wash buffer (lx PBS, 0.05% Tween 20) to remove displaced kinase and test compound. The washed based were re-suspended in elution buffer (lx PBS, 0.05% Tween 20, 0.5 μM non-biotinylated affinity ligand) and incubated at room temperature with shaking for 30 minutes. The kinase concentration in the eluates was measured by qPCR. qPCR reactions were assembled by adding 2.5 μL of kinase eluate to 7.5 μL of qPCR master mix containing 0.15 μM amplicon primers and 0.15 μM amplicon probe. The qPCR protocol consisted of a 10 minute hot start at 95° C., followed by 35 cycles of 95° C. for 15 seconds, 60° C. for 1 minute.
4098
Total Activities
1145
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

Target

Non-receptor tyrosine-protein kinase TYK2 (CHEMBL3553)
Type SINGLE PROTEIN
Organism Homo sapiens

Publication

TYK2 inhibitors and uses thereof
(2021)

Activity Statistics

Type Count Avg pChEMBL Best pChEMBL
Kd 1366 8.92 9.22
kon 1366 - -
k_off 1366 - -

Compounds Tested

Compound Name Phase Activities Best pChEMBL
CHEMBL5912517 3 9.22
CHEMBL5963500 3 9.22
CHEMBL5815528 3 9.22
CHEMBL5846285 3 9.22
CHEMBL6024976 3 9.22
CHEMBL5881658 3 9.22
CHEMBL5770780 3 9.22
CHEMBL5936262 3 9.22
CHEMBL6060681 3 9.22
CHEMBL5765707 3 9.22
CHEMBL6010516 3 9.22
CHEMBL5982363 3 9.22
CHEMBL5960208 3 9.22
CHEMBL5783126 3 9.22
CHEMBL5782381 3 9.22
CHEMBL5757345 3 9.22
CHEMBL6035629 3 9.22
CHEMBL5818149 3 9.22
CHEMBL5858495 3 9.22
CHEMBL5792142 3 9.22
CHEMBL6062445 3 9.22
CHEMBL6050871 3 9.22
CHEMBL5746266 3 9.22
CHEMBL5870644 3 9.22
CHEMBL5994004 3 9.22
CHEMBL5935944 3 9.22
CHEMBL5774802 3 9.22
CHEMBL5756306 3 9.22
CHEMBL5839123 3 9.22
CHEMBL5740202 3 9.22

Activity Data

Compound Name Type Rel. Value Units pChEMBL
CHEMBL5912252 Kd = 0.6 nM 9.22
CHEMBL5929539 Kd = 0.6 nM 9.22
CHEMBL5841369 Kd = 0.6 nM 9.22
CHEMBL6048720 Kd = 0.6 nM 9.22
CHEMBL5855141 Kd = 0.6 nM 9.22
CHEMBL5967889 Kd = 0.6 nM 9.22
CHEMBL5787309 Kd = 0.6 nM 9.22
CHEMBL6030676 Kd = 0.6 nM 9.22
CHEMBL5967338 Kd = 0.6 nM 9.22
CHEMBL6046719 Kd = 0.6 nM 9.22
CHEMBL6044813 Kd = 0.6 nM 9.22
CHEMBL6041420 Kd = 0.6 nM 9.22
CHEMBL5904875 Kd = 0.6 nM 9.22
CHEMBL5826861 Kd = 0.6 nM 9.22
CHEMBL6053242 Kd = 0.6 nM 9.22
CHEMBL5985334 Kd = 0.6 nM 9.22
CHEMBL5896372 Kd = 0.6 nM 9.22
CHEMBL5422616 Kd = 0.6 nM 9.22
CHEMBL5752828 Kd = 0.6 nM 9.22
CHEMBL5895378 Kd = 0.6 nM 9.22
CHEMBL5988629 Kd = 0.6 nM 9.22
CHEMBL5894297 Kd = 0.6 nM 9.22
CHEMBL5906629 Kd = 0.6 nM 9.22
CHEMBL5805067 Kd = 0.6 nM 9.22
CHEMBL5849018 Kd = 0.6 nM 9.22
CHEMBL6044510 Kd = 0.6 nM 9.22
CHEMBL5995666 Kd = 0.6 nM 9.22
CHEMBL6048552 Kd = 0.6 nM 9.22
CHEMBL5744873 Kd = 0.6 nM 9.22
CHEMBL5784527 Kd = 0.6 nM 9.22
CHEMBL5782057 Kd = 0.6 nM 9.22
CHEMBL5958644 Kd = 0.6 nM 9.22
CHEMBL5929523 Kd = 0.6 nM 9.22
CHEMBL5803218 Kd = 0.6 nM 9.22
CHEMBL5750310 Kd = 0.6 nM 9.22
CHEMBL6017439 Kd = 0.6 nM 9.22
CHEMBL5893243 Kd = 0.6 nM 9.22
CHEMBL5771798 Kd = 0.6 nM 9.22
CHEMBL5937821 Kd = 0.6 nM 9.22
CHEMBL5867201 Kd = 0.6 nM 9.22
CHEMBL5854932 Kd = 0.6 nM 9.22
CHEMBL5875722 Kd = 0.6 nM 9.22
CHEMBL5900756 Kd = 0.6 nM 9.22
CHEMBL5885810 Kd = 0.6 nM 9.22
CHEMBL5868177 Kd = 0.6 nM 9.22
CHEMBL5437915 Kd = 0.6 nM 9.22
CHEMBL6020844 Kd = 0.6 nM 9.22
CHEMBL5787435 Kd = 0.6 nM 9.22
CHEMBL5831374 Kd = 0.6 nM 9.22
CHEMBL5991897 Kd = 0.6 nM 9.22