Source Gaulton A, Kale N, van Westen GJ, Bellis LJ, Bento AP, Davies M, Hersey A, Papadatos G, Forster M, Wege P, Overington JP. A large-scale crop protection bioassay data set. Sci Data. 2015 Jul 7;2:150032. Read more ...

Structure

InChI Key CEJZIJWDLSAISU-SOYKGTTHSA-N
Smiles CCOCCOP(=O)(OCCOCC)C(N\C(=C(\C#N)/C(=O)OCCOc1ccccc1)\SC)c2ccccc2F
InChI
InChI=1S/C28H36FN2O8PS/c1-4-34-15-19-38-40(33,39-20-16-35-5-2)26(23-13-9-10-14-25(23)29)31-27(41-3)24(21-30)28(32)37-18-17-36-22-11-7-6-8-12-22/h6-14,26,31H,4-5,15-20H2,1-3H3/b27-24+

Physicochemical Descriptors

Property Name Value
Molecular Formula C28H36FN2O8PS
Molecular Weight 610.63
AlogP 4.07
Hydrogen Bond Acceptor 11.0
Hydrogen Bond Donor 1.0
Number of Rotational Bond 21.0
Polar Surface Area 160.44
Molecular species NEUTRAL
Aromatic Rings 2.0
Heavy Atoms 41.0
Assay Description Organism Bioactivity Reference
In vivo antiviral activity against Tobacco mosaic virus (TMV) infected left side of tobacco leaves assessed as inactivation effect by decreasing local lesion number at 500 mg/l co-incubated with virus for 30 min before inoculation onto leaves measured at 3-4 days after viral challenge Tobacco mosaic virus 23.7 %
In vivo antiviral activity against Tobacco mosaic virus (TMV) infected left side of tobacco leaves assessed as curative effect by decreasing local lesion number at 500 mg/l treated after viral inoculation measured at 3-4 days after viral challenge Tobacco mosaic virus 27.7 %
In vivo antiviral activity against Tobacco mosaic virus (TMV) infected left side of tobacco leaves assessed as protective effect by decreasing local lesion number at 500 mg/l treated 12 hr before viral inoculation measured at 3-4 days after viral challenge Tobacco mosaic virus 30.7 %

Cross References

Resources Reference
ChEMBL CHEMBL2230350
PubChem 45277640