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 XUAORUWVUTVEEC-UHFFFAOYSA-N
Smiles Oc1ccc(cc1)C2=CC(=O)c3c(O)c(c(O)cc3O2)c4cc(ccc4O)C5CC(=O)c6c(O)cc(O)cc6O5
InChI
InChI=1S/C30H20O10/c31-15-4-1-13(2-5-15)23-11-22(37)29-26(39-23)12-20(35)27(30(29)38)17-7-14(3-6-18(17)33)24-10-21(36)28-19(34)8-16(32)9-25(28)40-24/h1-9,11-12,24,31-35,38H,10H2

Physicochemical Descriptors

Property Name Value
Molecular Formula C30H20O10
Molecular Weight 540.47
AlogP 4.47
Hydrogen Bond Acceptor 10.0
Hydrogen Bond Donor 6.0
Number of Rotational Bond 3.0
Polar Surface Area 173.98
Molecular species ACID
Aromatic Rings 4.0
Heavy Atoms 40.0
Assay Description Organism Bioactivity Reference
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves chloroplasts assessed as effect on partial reaction from PMS reduced with ascorbate to MV using KCN treated thylakoids Spinacia oleracea None
Inhibition of uncoupled electron transport flow in Spinacia oleracea (spinach) leaves intact chloroplasts at 300 uM Spinacia oleracea 32.0 %
Inhibition of thylakoid membrane bound Magnesium-transporting Mg2+ ATPase in Spinacia oleracea (spinach) leaves chloroplasts assessed as enzyme activity at 300 uM Spinacia oleracea 34.0 %
Inhibition of thylakoid membrane bound Magnesium-transporting Mg2+ ATPase in Spinacia oleracea (spinach) leaves chloroplasts assessed as enzyme activity at 200 uM Spinacia oleracea 47.0 %
Inhibition of thylakoid membrane bound Magnesium-transporting Mg2+ ATPase in Spinacia oleracea (spinach) leaves chloroplasts assessed as enzyme activity at 100 uM Spinacia oleracea 53.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from TMQH2 to MV at 50 uM Spinacia oleracea 100.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from TMQH2 to MV at 300 uM Spinacia oleracea 72.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from TMQH2 to MV at 200 uM Spinacia oleracea 74.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from TMQH2 to MV at 100 uM Spinacia oleracea 98.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from DCPIP to MV at 50 uM Spinacia oleracea 96.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from DCPIP to MV at 300 uM Spinacia oleracea 71.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from DCPIP to MV at 200 uM Spinacia oleracea 74.0 %
Inhibition of photosystem I in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from DCPIP to MV at 100 uM Spinacia oleracea 100.0 %
Inhibition of photosystem II in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from H2O to DCPIP at 50 uM Spinacia oleracea 100.0 %
Inhibition of photosystem II in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from H2O to DCPIP at 200 uM Spinacia oleracea 100.0 %
Inhibition of photosystem II in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from H2O to DCPIP at 300 uM Spinacia oleracea 100.0 %
Inhibition of photosystem II in Spinacia oleracea (spinach) leaves intact chloroplasts assessed as electron transport flow from H2O to DCPIP at 100 uM Spinacia oleracea 100.0 %
Inhibition of ATP synthesis in Spinacia oleracea (spinach) leaves intact chloroplasts Spinacia oleracea 39000.0 nM

Cross References

Resources Reference
ChEMBL CHEMBL2253314
PubChem 76315513