Natural Product: NPC611453

Natural Product IDNPC611453
Common Name
?
The InCHIKey will be temporarily assigned as the "Common Name" if no IUPAC name or alternative short name is available.
BYHWAEAVIGYEBJ-QJTMEEEXSA-N
IUPAC Name n.a.
Synonyms
Synthetic Gene Cluster n.a.
ChEMBL Identifier CHEMBL5171542
PubChem CID n.a.
Chemical Classification
  • CHEMONTID:0000000 [Organic compounds]

The Chemical Classification was calculated by Classyfire, a software for chemical taxonomy calculation. Reference: DOI:10.1186/s13321-016-0174-y.

  Chemical Representations

Standard InCHIKey BYHWAEAVIGYEBJ-QJTMEEEXSA-N
Standard InCHI InChI=1S/C29H34N4/c1-2-18-17-33-14-12-23-21-8-4-6-10-25(21)32-29(23)27(33)16-19(18)15-26-28-22(11-13-30-26)20-7-3-5-9-24(20)31-28/h3-10,18-19,26-27,30-32H,2,11-17H2,1H3/t18-,19-,26+,27-/m0/s1
SMILES CC[C@H]1CN2CCc3c([nH]c4ccccc34)[C@@H]2C[C@@H]1C[C@H]1NCCc2c1[nH]c1ccccc21

  Calculated Properties

Physi-Chem Properties

MedChem Properties

ADMET Properties (ADMETlab3.0)

ADMET: Absorption

ADMET: Distribution

ADMET: Metabolism

ADMET: Excretion

ADMET: Toxicity

  Species Source

Organism ID Organism Name Taxonomy Level Family SuperKingdom Isolation Part Collection Location Collection Time Reference
NPO33625 Ochrosia moorei Species Apocynaceae Eukaryota stems and leaves Natural Arch National Park, McPherson Range, in South East Queensland 1995-MAR PMID[18412397]
NPO56351 Dyera costulata Species Apocynaceae Eukaryota n.a. n.a. n.a. Database[COCONUT]
NPO43600 Neisosperma kilneri Species Apocynaceae Eukaryota n.a. n.a. n.a. Database[COCONUT]
NPO9214 Ochrosia confusa Species Apocynaceae Eukaryota n.a. n.a. n.a. Database[COCONUT]
NPO48111 Ochrosia lifuana Genus Apocynaceae Eukaryota n.a. n.a. n.a. Database[COCONUT]
NPO58593 Ochrosia miana Species Apocynaceae Eukaryota n.a. n.a. n.a. Database[COCONUT]
NPO33625 Ochrosia moorei Species Apocynaceae Eukaryota n.a. n.a. n.a. Database[COCONUT]
NPO9214 Ochrosia confusa Species Apocynaceae Eukaryota n.a. n.a. n.a. Database[TCMID]

Note for Reference:
In addition to directly collecting NP source organism data from primary literature (where reference will provided as NCBI PMID or DOI links), NPASS also integrated them from below databases:
UNPD: Universal Natural Products Database [PMID: 23638153].
StreptomeDB: a database of streptomycetes natural products [PMID: 33051671].
TM-MC: a database of medicinal materials and chemical compounds in Northeast Asian traditional medicine [PMID: 26156871].
TCM@Taiwan: a Traditional Chinese Medicine database [PMID: 21253603].
TCMID: a Traditional Chinese Medicine database [PMID: 29106634].
TCMSP: The traditional Chinese medicine systems pharmacology database and analysis platform [PMID: 24735618].
HerDing: a herb recommendation system to treat diseases using genes and chemicals [PMID: 26980517].
MetaboLights: a metabolomics database [PMID: 27010336].
FooDB: a database of constituents, chemistry and biology of food species [www.foodb.ca].



  NP Quantity Composition/Concentration

Organism ID Organism Name Organism Material Preparation Organism Part NP Quantity (Standard) NP Quantity (Minimum) NP Quantity (Maximum) Quantity Unit Reference

Note for Reference:
In addition to directly collecting NP quantitative data from primary literature (where reference will provided as NCBI PMID or DOI links), NPASS also integrated NP quantitative records for specific NP domains (e.g., NPS from foods or herbs) from domain-specific databases. These databases include:
DUKE: Dr. Duke's Phytochemical and Ethnobotanical Databases.
PHENOL EXPLORER: is the first comprehensive database on polyphenol content in foods [PMID: 24103452], its homepage can be accessed at here.
FooDB: a database of constituents, chemistry and biology of food species [www.foodb.ca].



 Biological Activity

Molecular-level activity

Target ID Target Type Target Name Target Organism Activity Type Activity Relation Value Unit Reference

In vitro activity

Target ID Target Type Target Name Target Organism Activity Type Activity Relation Value Unit Reference
NPT6 Organism Plasmodium falciparum Plasmodium falciparum IC50 = 118.0 nM PMID[34058709]
NPT6 Organism Plasmodium falciparum Plasmodium falciparum IC50 = 492.0 nM PMID[34058709]

In vivo activity

Target ID Target Type Target Name Target Organism Activity Type Activity Relation Value Unit Reference





 Experimental ADME

Experiment Model Experiment Tissue ADME Type ADME Relation ADME Value ADME Unit Reference





 Experimental Toxicity

Quantitative toxicity

Experiment Model Experiment Organism Toxicity Type Toxicity Relation Toxicity Value Toxicity Unit Reference

Common Abbreviations:
LC: Lethal Concentration; LD: Lethal Dose; LT:Lethal Time; NOAEL: No-observed-adverse-effect Level; BMDL: Benchmark Dose Lower Confidence Limit; BMD: Benchmark Dose; BMC:Benchmark Concentration; LOAEL: Lowest Observed Adverse Effect Level; RfD:Reference Dose; RfC:Reference Concentration; MRL: Minimal Risk Level; MEG: Maximum Exposure Guideline; PAC: Protective Action Criteria

Categorical toxicity labels

Hepatotoxicity Carcinogenicity Mutagenicity Cardiotoxicity Respiratory Toxicity Eye Irritation Endocrine Disruption
Hepatotoxicity Carcinogenicity Mutagenicity Cardiotoxicity Respiratory Toxicity Eye Irritation Endocrine Disruption

Note for Reference:
In addition to directly collecting NP quantitative data from primary literature (where reference will provided as NCBI PMID or DOI links), NPASS also integrated NP toxicity records from domain-specific databases. These databases include:
ToxValDB: a curated database that compiles quantitative toxicity values for chemicals from diverse public sources to support toxicological research and risk assessment.
TOXRIC: a comprehensive, free-to-access, online database providing toxicological/feature data. The toxicity labels are retrieved from this database. [PMID: 36400569]


  Chemically structural similarity

Similar Active Natural Products in NPASS

Top-200 similar NPs were calculated against the active-NP-set (includes approximately 50,000 NPs with experimentally-derived bioactivity available in NPASS)

Similarity is measured using the Tanimoto coefficient (Tc) , which compares the binary fingerprints of two molecules. Tc is calculated as the intersection divided by the union of '1' bits in the fingerprints, ranging from 0 to 1, with 1 indicating highest similarity.

●  The left chart: Distribution of similarity level between NPC611453 and all remaining natural products in the NPASS database.
●  The right table: Most similar natural products (Tc>=0.5 or Top200).

Similarity Score Similarity Level Natural Product ID
0.686 Remote Similarity NPC176284
0.6667 Remote Similarity NPC185200
0.6413 Remote Similarity NPC280243
0.5625 Remote Similarity NPC229173
0.5581 Remote Similarity NPC486449
0.5581 Remote Similarity NPC63199
0.5581 Remote Similarity NPC111602
0.5581 Remote Similarity NPC102338
0.5581 Remote Similarity NPC196251
0.5567 Remote Similarity NPC21466
0.5521 Remote Similarity NPC280272
0.5465 Remote Similarity NPC486452
0.5465 Remote Similarity NPC74591
0.53 Remote Similarity NPC479825
0.5169 Remote Similarity NPC50503
0.5169 Remote Similarity NPC607669
0.5122 Remote Similarity NPC21174
0.5119 Remote Similarity NPC474897
0.5056 Remote Similarity NPC313985
0.5056 Remote Similarity NPC249150
0.5056 Remote Similarity NPC33619
0.505 Remote Similarity NPC474880
0.505 Remote Similarity NPC221786

Similar Clinical/Approved Drugs

Similarity level is defined by Tanimoto coefficient (Tc) between two molecules.

●  The left chart: Distribution of similarity level between NPC611453 and all drugs/candidates.
●  The right table: Most similar clinical/approved drugs (Tc>=0.5 or Top200).

Similarity Score Similarity Level Drug ID Developmental Stage
0.5056 Remote Similarity NPD4601 Phase 4

Bioactivity similarity

  Bioactivity similarity

Similar Natural Products in NPASS

Similarity level is defined by Bioactivity similarity was calculated based on bioactivity descriptors of compounds. The bioactivity descriptors were calculated by a recently developed AI algorithm Chemical Checker (CC) [Nature Biotechnology, 38:1087–1096, 2020; Nature Communications, 12:3932, 2021], which evaluated bioactivity similarities at five levels:
A: chemistry similarity;
B: biological targets similarity;
C: networks similarity;
D: cell-based bioactivity similarity;
E: similarity based on clinical data.
Those 5 categories of CC bioactivity descriptors were calculated and then subjected to manifold projection using UMAP algorithm, to project all NPs on a 2-Dimensional space. The current NP was highlighted with a small circle in the 2-D map. Below figures: left-to-right, A-to-E.

A: chemistry similarity
B: biological targets similarity
C: networks similarity
D: cell-based bioactivity similarity
E: similarity based on clinical data