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Two Marine Cyanobacterial Aplysiatoxin Polyketides, Neo-debromoaplysiatoxin A and B, with K+ Channel Inhibition Activity.

Bing-Nan HanTing-Ting LiangLawrence Jordan KeenTing-Ting FanXiao-Dan ZhangLin XuQi ZhaoShu-Ping WangHou-Wen Lin
Published in: Organic letters (2018)
The isolation and structure elucidation of two cyanobacterial debromoaplysiatoxin (DAT) analogues, neo-debromoaplysiatoxin A (1) and neo-debromoaplysiatoxin B (2), were reported and found to possess 6/10/6 and 6/6/6 fused-ring systems, respectively, which are rarely seen among aplysiatoxins. Both compounds exhibited potent blocking activity against Kv1.5 with IC50 values of 6.94 ± 0.26 and 0.30 ± 0.05 μM, respectively. These findings suggest the potential of aplysiatoxin analogues in modulating ionic channels and also provide links between the DAT target, protein kinase C, and cell regulation.
Keyphrases
  • protein kinase
  • molecular docking
  • single cell
  • cell therapy
  • signaling pathway
  • magnetic resonance imaging
  • computed tomography
  • risk assessment
  • bone marrow
  • mesenchymal stem cells