7,8-Dithia-3,12-diazatricyclo[7.3.0.02,6]dodeca-1(9),2(6),4,10-tetraene

Details

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Internal ID 308edf97-fe42-4805-86db-6a9359e612c4
Taxonomy Organoheterocyclic compounds > Heteroaromatic compounds
IUPAC Name 7,8-dithia-3,12-diazatricyclo[7.3.0.02,6]dodeca-1(9),2(6),4,10-tetraene
SMILES (Canonical) C1=CNC2=C1SSC3=C2NC=C3
SMILES (Isomeric) C1=CNC2=C1SSC3=C2NC=C3
InChI InChI=1S/C8H6N2S2/c1-3-9-7-5(1)11-12-6-2-4-10-8(6)7/h1-4,9-10H
InChI Key VXLMEZOAKVFQLH-UHFFFAOYSA-N
Popularity 0 references in papers

Physical and Chemical Properties

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Molecular Formula C8H6N2S2
Molecular Weight 194.30 g/mol
Exact Mass 193.99724055 g/mol
Topological Polar Surface Area (TPSA) 82.20 Ų
XlogP 1.40
Atomic LogP (AlogP) 3.12
H-Bond Acceptor 2
H-Bond Donor 2
Rotatable Bonds 0

Synonyms

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There are no found synonyms.

2D Structure

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2D Structure of 7,8-Dithia-3,12-diazatricyclo[7.3.0.02,6]dodeca-1(9),2(6),4,10-tetraene

3D Structure

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ADMET Properties (via admetSAR 2)

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Target Value Probability (raw) Probability (%)
Human Intestinal Absorption + 0.9913 99.13%
Caco-2 - 0.5661 56.61%
Blood Brain Barrier + 0.8250 82.50%
Human oral bioavailability + 0.8000 80.00%
Subcellular localzation Mitochondria 0.3759 37.59%
OATP2B1 inhibitior - 1.0000 100.00%
OATP1B1 inhibitior + 0.9646 96.46%
OATP1B3 inhibitior + 0.9486 94.86%
MATE1 inhibitior - 0.7200 72.00%
OCT2 inhibitior - 0.9250 92.50%
BSEP inhibitior - 0.6812 68.12%
P-glycoprotein inhibitior - 0.9816 98.16%
P-glycoprotein substrate - 0.9600 96.00%
CYP3A4 substrate - 0.7912 79.12%
CYP2C9 substrate - 0.8012 80.12%
CYP2D6 substrate - 0.7073 70.73%
CYP3A4 inhibition - 0.8203 82.03%
CYP2C9 inhibition - 0.7429 74.29%
CYP2C19 inhibition - 0.6172 61.72%
CYP2D6 inhibition - 0.6129 61.29%
CYP1A2 inhibition + 0.7455 74.55%
CYP2C8 inhibition - 0.9332 93.32%
CYP inhibitory promiscuity + 0.5249 52.49%
UGT catelyzed - 0.0000 0.00%
Carcinogenicity (binary) - 0.8133 81.33%
Carcinogenicity (trinary) Non-required 0.7021 70.21%
Eye corrosion - 0.9785 97.85%
Eye irritation + 0.9478 94.78%
Skin irritation + 0.5129 51.29%
Skin corrosion - 0.9051 90.51%
Ames mutagenesis - 0.7200 72.00%
Human Ether-a-go-go-Related Gene inhibition - 0.7144 71.44%
Micronuclear + 0.8300 83.00%
Hepatotoxicity + 0.6500 65.00%
skin sensitisation - 0.8395 83.95%
Respiratory toxicity - 0.5778 57.78%
Reproductive toxicity + 0.7333 73.33%
Mitochondrial toxicity - 0.5500 55.00%
Nephrotoxicity - 0.6816 68.16%
Acute Oral Toxicity (c) III 0.5014 50.14%
Estrogen receptor binding + 0.5494 54.94%
Androgen receptor binding + 0.6422 64.22%
Thyroid receptor binding + 0.5864 58.64%
Glucocorticoid receptor binding - 0.4666 46.66%
Aromatase binding - 0.4860 48.60%
PPAR gamma + 0.7025 70.25%
Honey bee toxicity - 0.9372 93.72%
Biodegradation - 0.9250 92.50%
Crustacea aquatic toxicity + 0.7700 77.00%
Fish aquatic toxicity + 0.8243 82.43%

Targets

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Proven Targets:

CHEMBL ID UniProt ID Name Min activity Assay type Source
No proven targets yet!

Predicted Targets (via Super-PRED):

CHEMBL ID UniProt ID Name Probability Model accuracy
CHEMBL4224 P49759 Dual specificty protein kinase CLK1 88.92% 85.30%
CHEMBL3830 Q2M2I8 Adaptor-associated kinase 87.96% 83.10%
CHEMBL4203 Q9HAZ1 Dual specificity protein kinase CLK4 82.88% 94.45%
CHEMBL3108638 O15164 Transcription intermediary factor 1-alpha 81.83% 95.56%
CHEMBL5619 P27695 DNA-(apurinic or apyrimidinic site) lyase 81.79% 91.11%

Plants that contains it

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Below are displayed all the plants proven (via scientific papers) to contain this compound!
To see more specific details click the taxa you are interested in.
Allium giganteum

Cross-Links

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PubChem 101863018
LOTUS LTS0270992
wikiData Q105298559