General Information of the Compound
Compound ID
CP0057361
Compound Name
4-[6,6-dimethyl-4-oxo-3-(trifluoromethyl)-5,7-dihydroindazol-1-yl]-2-[(4-hydroxycyclohexyl)amino]benzamide
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Formula
C23H27F3N4O3
Molecular Weight
464.488
Canonical SMILES
CC1(C)Cc2c(c(nn2-c2ccc(C(N)=O)c(NC3CCC(O)CC3)c2)C(F)(F)F)C(=O)C1
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InChI
InChI=1S/C23H27F3N4O3/c1-22(2)10-17-19(18(32)11-22)20(23(24,25)26)29-30(17)13-5-8-15(21(27)33)16(9-13)28-12-3-6-14(31)7-4-12/h5,8-9,12,14,28,31H,3-4,6-7,10-11H2,1-2H3,(H2,27,33)/t12-,14-
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InChIKey
ZFVRYNYOPQZKDG-MQMHXKEQSA-N
Physicochemical Property
logP
3.8605
Rotatable Bonds
4
Heavy Atom Count
33
Polar Areas
110.24
Hydrogen Bond Donor Count
3
Hydrogen Bond Acceptor Count
6
Complexity
33

"RO5" indicates the cutoff set by lipinski's rule of five:

(1) Molecular weight less than 500 Dalton;

(2) xlogp less than 5;

(3) No more than 5 hbonddonor (Hydrogen Bond Donor Count);

(4) No more than 10 hbondacc (Hydrogen Bond Acceptor Count);

(5) No more than 10 rotbonds (Rotatable Bond Count).

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ChEMBL ID
CHEMBL560895
DrugBank ID
DB17055
Map of Molecular Bioactivity Related to the Compound
Map of Molecular Bioactivity Related to the Compound

Compound
Cell Line
Protein

Bioactivity Value:

<= 0.1 μM
> 0.1 μM and <= 10 μM
> 10 μM
Imprecise Activity
Table of Molecular Bioactivities Related to the Compound
Protein ID: PT01500, Heat shock protein HSP 90-alpha
Cell-based Assay
Cell Line ID Cell Line Name Cell Line Organism
CL000083 MCF-7 Homo sapiens (Human)  1
1
EC50 = 19 nM
   TI
   LI
   LO
   TS
CL000013 Sf9 Spodoptera frugiperda (Fall armyworm)  1
1
Ki = 4 nM
   TI
   LI
   LO
   TS
Biochemical Assays
1 IC50 = 3 nM
2 IC50 = 6 nM
3 IC50 = 29 nM
4 Kd = 4 nM
Protein ID: PT01478, Heat shock protein HSP 90-beta
Cell-based Assay
Cell Line ID Cell Line Name Cell Line Organism
CL000083 MCF-7 Homo sapiens (Human)  1
1
IC50 = 22 nM
   TI
   LI
   LO
   TS
CL000013 Sf9 Spodoptera frugiperda (Fall armyworm)  1
1
Ki = 6 nM
   TI
   LI
   LO
   TS
Biochemical Assays
1 IC50 = 4 nM
2 IC50 = 7 nM
3 IC50 = 25 nM
4 Ki = 1.1 nM
5 Ki = 2.8 nM