Activity Type | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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ID: ALA2408224
Max Phase: Preclinical
Molecular Formula: C14H17N3O5
Molecular Weight: 307.31
Molecule Type: Small molecule
Associated Items:
ID: ALA2408224
Max Phase: Preclinical
Molecular Formula: C14H17N3O5
Molecular Weight: 307.31
Molecule Type: Small molecule
Associated Items:
Canonical SMILES: OC[C@H]1O[C@@H](c2nc(-c3ccccc3)n[nH]2)[C@H](O)[C@@H](O)[C@@H]1O
Standard InChI: InChI=1S/C14H17N3O5/c18-6-8-9(19)10(20)11(21)12(22-8)14-15-13(16-17-14)7-4-2-1-3-5-7/h1-5,8-12,18-21H,6H2,(H,15,16,17)/t8-,9-,10+,11-,12-/m1/s1
Standard InChI Key: GTQQOMHOHKJYAX-RMPHRYRLSA-N
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Activity Type | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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Natural Product: No | Oral: No | Chemical Probe: No | Parenteral: No |
Molecule Type: Small molecule | Topical: No | First In Class: No | Black Box: No |
Chirality: No | Availability: No | Prodrug: No |
MESH ID | MESH Heading | EFO IDs | EFO Terms | Max Phase for Indication | References |
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Mechanism of Action | Action Type | target ID | Target Name | Target Type | Target Organism | Binding Site Name | References |
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Molecular Weight: 307.31 | Molecular Weight (Monoisotopic): 307.1168 | AlogP: -1.01 | #Rotatable Bonds: 3 |
Polar Surface Area: 131.72 | Molecular Species: NEUTRAL | HBA: 7 | HBD: 5 |
#RO5 Violations: 0 | HBA (Lipinski): 8 | HBD (Lipinski): 5 | #RO5 Violations (Lipinski): 0 |
CX Acidic pKa: 9.50 | CX Basic pKa: 0.51 | CX LogP: -0.55 | CX LogD: -0.56 |
Aromatic Rings: 2 | Heavy Atoms: 22 | QED Weighted: 0.49 | Np Likeness Score: 0.27 |
1. Bokor E, Docsa T, Gergely P, Somsák L.. (2013) C-Glucopyranosyl-1,2,4-triazoles As New Potent Inhibitors of Glycogen Phosphorylase., 4 (7): [PMID:24900719] [10.1021/ml4001529] |
2. Kun S, Bokor É, Varga G, Szőcs B, Páhi A, Czifrák K, Tóth M, Juhász L, Docsa T, Gergely P, Somsák L.. (2014) New synthesis of 3-(β-D-glucopyranosyl)-5-substituted-1,2,4-triazoles, nanomolar inhibitors of glycogen phosphorylase., 76 [PMID:24608000] [10.1016/j.ejmech.2014.02.041] |
3. Bokor É, Kyriakis E, Solovou TGA, Koppány C, Kantsadi AL, Szabó KE, Szakács A, Stravodimos GA, Docsa T, Skamnaki VT, Zographos SE, Gergely P, Leonidas DD, Somsák L.. (2017) Nanomolar Inhibitors of Glycogen Phosphorylase Based on β-d-Glucosaminyl Heterocycles: A Combined Synthetic, Enzyme Kinetic, and Protein Crystallography Study., 60 (22): [PMID:28925695] [10.1021/acs.jmedchem.7b01056] |
4. Kyriakis E, Karra AG, Papaioannou O, Solovou T, Skamnaki VT, Liggri PGV, Zographos SE, Szennyes E, Bokor É, Kun S, Psarra AG, Somsák L, Leonidas DD.. (2020) The architecture of hydrogen and sulfur σ-hole interactions explain differences in the inhibitory potency of C-β-d-glucopyranosyl thiazoles, imidazoles and an N-β-d glucopyranosyl tetrazole for human liver glycogen phosphorylase and offer new insights to structure-based design., 28 (1): [PMID:31767404] [10.1016/j.bmc.2019.115196] |
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