Ligand profile

ZINC8429382

Virtual-screening candidate from ZINC.

Bound to: KP13_00665 — Glucose-1-phosphate adenylyltransferase

Via homolog UniProtQ9HU22 FormulaC₁₅H₁₉N₅O₃
Tanimoto 0.76
Mol. weight 317.35 Da
Permeability Check
PAINS Clean

Identifiers

Database identifiers and provenance.

Ligand ID
ZINC8429382
UniProt (similar protein)
Q9HU22
Tanimoto
0.761
Target protein
KP13_00665

Structure

2D representation rendered from SMILES.

Physicochemical properties

Computed with RDKit from SMILES.

Molecular weight 317.35 Da
LogP (Crippen) 0.33
H-bond donors 3
H-bond acceptors 5
TPSA 113.22 Ų
Rotatable bonds 4
Aromatic rings 2 / 2
Heavy atoms 23
Fraction sp³ C 0.27
Formula C₁₅H₁₉N₅O₃

Drug-likeness

Descriptor-based ADME screening flags from SMILES. These are not experimental toxicity results.

Permeability proxy Check

Estimated from TPSA and LogP only: TPSA ≤ 90 Ų and −1 ≤ LogP ≤ 5 are treated as a favorable small-molecule permeability screen.

  • TPSA ≤ 90 Ų 113.2
  • −1 ≤ LogP ≤ 5 0.33
Lipinski's Rule of Five Pass 0 violations
  • MW ≤ 500 Da 317.3
  • LogP ≤ 5 0.33
  • H-bond donors ≤ 5 3
  • H-bond acceptors ≤ 10 5
Veber's rules Pass
  • Rotatable bonds ≤ 10 4
  • TPSA ≤ 140 Ų 113.2
PAINS Clean

No PAINS structural alerts detected.

Chemical representations

Canonical representations for cheminformatics workflows.

SMILES
CCNC(=O)N(C)c1c(N)n(Cc2ccccc2)c(=O)[nH]c1=O
InChI
InChI=1S/C15H19N5O3/c1-3-17-14(22)19(2)11-12(16)20(15(23)18-13(11)21)9-10-7-5-4-6-8-10/h4-8H,3,9,16H2,1-2H3,(H,17,22)(H,18,21,23)
InChIKey
NEUXORVFTKCGDN-UHFFFAOYSA-N

Provenance

Annotation context from LigQ_2, the internal Target step that collects PDB, ChEMBL, and ZINC ligand evidence.

Method
LigQ nearest_k
Query
N5Y
Homolog
Q9HU22

External resources

Open this ligand in third-party databases and cheminformatics tools.

Other ligands for this protein

Quick navigation to other ligands bound to KP13_00665.

PDB 31

Ligands co-crystallized with this protein (structural evidence).

Ligand PDB entry

ZINC 49

Virtual screening candidates selected by structural similarity to known actives (Tanimoto ≥ 0.5).

Compound Similarity (Tanimoto)