Exploring C2 and N6 Substituent Effects on Truncated 4'-Thioadenosine Derivatives as Dual A2A and A3 Adenosine Receptor Ligands.

Adenosine receptor, 4'-Thionucleoside, Structure-Activity Relationship, Molecular docking

Journal

ChemMedChem
ISSN: 1860-7187
Titre abrégé: ChemMedChem
Pays: Germany
ID NLM: 101259013

Informations de publication

Date de publication:
30 Oct 2024
Historique:
revised: 28 09 2024
received: 24 07 2024
accepted: 29 10 2024
medline: 31 10 2024
pubmed: 31 10 2024
entrez: 30 10 2024
Statut: aheadofprint

Résumé

Based on high binding affinity of truncated 2-hexynyl-4'-thioadenosine (3a) at both A2A adenosine receptor (AR) and A3 AR, we explored structure-activity relationship (SAR) of the C2-substitution by altering chain length of the 2-hexynyl moiety, thereby evaluating the hydrophobic pocket size. A series of truncated N6-substituted 4'-thioadenosine derivatives with C2-alkynyl substitution were successfully synthesized from D-mannose, using a palladium-catalyzed Sonogashira coupling reaction as the key step, whose structures were confirmed by the X-ray crystal structure of 4h. As the size of the alkynyl group at the C2-position increased, the binding affinity improved; however, when the substituted group was larger than hexynyl, the binding affinity decreased. The introduction of a bulky hydrophobic group such as 3-halobenzyl group at the free N6-amino group decreased the binding affinity at hA2AAR. These results confirm our previous findings that a free amino group at N6-position and longer hydrophobic chain at C2-position are essential for hA2A AR binding affinity. The introduction of a bulky hydrophobic group at free N6-amino group maintained the binding affinity at hA3 AR. The binding mode of truncated 2-substituted-4'-thioadenosine derivatives to hA2A and hA3 AR were predicted by a molecular docking study.

Identifiants

pubmed: 39477794
doi: 10.1002/cmdc.202400575
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

e202400575

Informations de copyright

© 2024 Wiley‐VCH GmbH.

Auteurs

Siddhi D Naik (SD)

Government College of Arts Science and Commerce Khandola, Department of Chemistry, INDIA.

Minjae Kim (M)

Seoul National University, College of Pharmacy, KOREA, REPUBLIC OF.

Jiyoung Choi (J)

Ewha Womans University, College of Pharmacy, KOREA, REPUBLIC OF.

Gibae Kim (G)

Seoul National University, College of Pharmacy, KOREA, REPUBLIC OF.

Seung Woo Kim (SW)

Seoul National University, College of Pharmacy, KOREA, REPUBLIC OF.

Vikas R Aswar (VR)

Seoul National University, College of Pharmacy, KOREA, REPUBLIC OF.

Sushil K Tripathi (SK)

Seoul National University, College of Pharmacy, KOREA, REPUBLIC OF.

Vidyasagar Gaikwad (V)

Seoul National University, College of Pharmacy, KOREA, REPUBLIC OF.

Jinha Yu (J)

Ewha Womans University, College of Pharmacy, 52, Ewhayeodae-gil, Seodaemun-gu, 03760, Seoul, KOREA, REPUBLIC OF.

Lak Shin Jeong (LS)

Seoul National University, College of Pharmacy, -, 08826, Seoul, KOREA, REPUBLIC OF.

Classifications MeSH