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Assay Detail

CHEMBL5737892

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Binding
Steroid Inhibition of TBPS Binding: TBPS binding assays using rat brain cortical membranes in the presence of 5 μM GABA has been described (Gee et al, J. Pharmacol. Exp. Ther. 1987, 241, 346-353; Hawkinson et al, Mol. Pharmacol. 1994, 46, 977-985; Lewin, A. H et al., Mol. Pharmacol. 1989, 35, 189-194).Briefly, cortices are rapidly removed following decapitation of carbon dioxide-anesthetized Sprague-Dawley rats (200-250 g). The cortices are homogenized in 10 volumes of ice-cold 0.32 M sucrose using a glass/teflon homogenizer and centrifuged at 1500×g for 10 min at 4° C. The resultant supernatants are centrifuged at 10,000×g for 20 min at 4° C. to obtain the P2 pellets. The P2 pellets are resuspended in 200 mM NaCl/50 mM Na-K phosphate pH 7.4 buffer and centrifuged at 10,000×g for 10 min at 4° C. This washing procedure is repeated twice and the pellets are resuspended in 10 volumes of buffer. Aliquots (100 μL) of the membrane suspensions are incubated with 3 nM [35S]-TBPS and 5 μL aliquots of test drug dissolved in dimethyl sulfoxide (DMSO) (final 0.5%) in the presence of 5 μM GABA. The incubation is brought to a final volume of 1.0 mL with buffer. Nonspecific binding is determined in the presence of 2 μM unlabeled TBPS and ranged from 15 to 25%. Following a 90 min incubation at room temp, the assays are terminated by filtration through glass fiber filters (Schleicher and Schuell No. 32) using a cell harvester (Brandel) and rinsed three times with ice-cold buffer. Filter bound radioactivity is measured by liquid scintillation spectrometry. Non-linear curve fitting of the overall data for each drug averaged for each concentration is done using Prism (GraphPad). The data are fit to a partial instead of a full inhibition model if the sum of squares is significantly lower by F-test. Similarly, the data are fit to a two component instead of a one component inhibition model if the sum of squares is significantly lower by F-test. The concentration of test compound producing 50% inhibition (IC50) of specific binding and the maximal extent of inhibition (Imax) are determined for the individual experiments with the same model used for the overall data and then the means±SEM.s of the individual experiments are calculated. Picrotoxin serves as the positive control for these studies as it has been demonstrated to robustly inhibit TBPS binding.
222
Total Activities
73
Compounds Tested
3
Activity Types
0
Assay Parameters

Assay Information

Assay Type Binding
Confidence 0 — Uncurated / Unknown
Curated By Autocuration

Target

Unchecked (CHEMBL612545)
Type UNCHECKED

Publication

19-NOR neuroactive steroids and methods of use thereof
(2022)

Activity Statistics

Type Count Avg pChEMBL Best pChEMBL
IC50 74 7.19 7.52
kon 74 - -
k_off 74 - -

Compounds Tested

Compound Name Phase Activities Best pChEMBL
CHEMBL5842337 3 7.52
CHEMBL3427544 3 7.52
CHEMBL3427542 3 7.52
CHEMBL3427541 3 7.52
CHEMBL5799972 3 7.52
CHEMBL6035698 3 7.52
CHEMBL3427540 3 7.52
CHEMBL3427539 3 7.52
CHEMBL3427538 3 7.52
CHEMBL3427537 3 7.52
CHEMBL3427548 3 7.52
CHEMBL5854895 3 7.52
CHEMBL5997207 3 7.52
CHEMBL5762368 3 7.52
CHEMBL5766931 3 7.52
CHEMBL5896791 3 7.52
CHEMBL5847219 3 7.52
CHEMBL5753532 3 7.52
CHEMBL5897595 3 7.52
CHEMBL5933555 3 7.52
CHEMBL5967254 3 7.52
CHEMBL5958376 3 7.52
CHEMBL5826240 6 7.52
CHEMBL6010167 3 7.52
CHEMBL3427543 3 7.52
CHEMBL5884965 3 7.12
CHEMBL5937457 3 7.12
CHEMBL5932981 3 7.12
CHEMBL6036322 3 7.12
CHEMBL6005948 3 7.12

Activity Data

Compound Name Type Rel. Value Units pChEMBL
CHEMBL5896791 IC50 = 30.0 nM 7.52
CHEMBL3427542 IC50 = 30.0 nM 7.52
CHEMBL3427544 IC50 = 30.0 nM 7.52
CHEMBL5854895 IC50 = 30.0 nM 7.52
CHEMBL3427541 IC50 = 30.0 nM 7.52
CHEMBL5847219 IC50 = 30.0 nM 7.52
CHEMBL5997207 IC50 = 30.0 nM 7.52
CHEMBL5799972 IC50 = 30.0 nM 7.52
CHEMBL3427543 IC50 = 30.0 nM 7.52
CHEMBL5762368 IC50 = 30.0 nM 7.52
CHEMBL6035698 IC50 = 30.0 nM 7.52
CHEMBL6010167 IC50 = 30.0 nM 7.52
CHEMBL5826240 IC50 = 30.0 nM 7.52
CHEMBL5753532 IC50 = 30.0 nM 7.52
CHEMBL3427540 IC50 = 30.0 nM 7.52
CHEMBL5842337 IC50 = 30.0 nM 7.52
CHEMBL5766931 IC50 = 30.0 nM 7.52
CHEMBL5826240 IC50 = 30.0 nM 7.52
CHEMBL3427548 IC50 = 30.0 nM 7.52
CHEMBL3427537 IC50 = 30.0 nM 7.52
CHEMBL3427538 IC50 = 30.0 nM 7.52
CHEMBL5897595 IC50 = 30.0 nM 7.52
CHEMBL5933555 IC50 = 30.0 nM 7.52
CHEMBL3427539 IC50 = 30.0 nM 7.52
CHEMBL5967254 IC50 = 30.0 nM 7.52
CHEMBL5958376 IC50 = 30.0 nM 7.52
CHEMBL6005948 IC50 = 75.0 nM 7.12
CHEMBL5884965 IC50 = 75.0 nM 7.12
CHEMBL5787700 IC50 = 75.0 nM 7.12
CHEMBL5872156 IC50 = 75.0 nM 7.12
CHEMBL5965797 IC50 = 75.0 nM 7.12
CHEMBL5945635 IC50 = 75.0 nM 7.12
CHEMBL6036322 IC50 = 75.0 nM 7.12
CHEMBL5937457 IC50 = 75.0 nM 7.12
CHEMBL5932981 IC50 = 75.0 nM 7.12
CHEMBL5949544 IC50 = 300.0 nM 6.52
CHEMBL5864267 IC50 = 300.0 nM 6.52
CHEMBL5793325 IC50 = 300.0 nM 6.52
CHEMBL5846650 IC50 = 300.0 nM 6.52
CHEMBL5960078 IC50 = 300.0 nM 6.52
CHEMBL5964175 IC50 = 300.0 nM 6.52
CHEMBL5762603 IC50 = 300.0 nM 6.52
CHEMBL5842928 IC50 = 300.0 nM 6.52
CHEMBL6024856 IC50 = 300.0 nM 6.52
CHEMBL5889848 IC50 = 300.0 nM 6.52
CHEMBL5866894 IC50 = 300.0 nM 6.52
CHEMBL5779496 IC50 = 300.0 nM 6.52
CHEMBL5960078 kon = - -
CHEMBL5848221 k_off = - s-1 -
CHEMBL5782063 k_off = - s-1 -