Tokyo University of Agriculture and Technology, Department of Biotechnology and Life Science, Koganei, Tokyo 184-8588, Japan.
Chemistry. 2011 Oct 17;17(43):12144-52. doi: 10.1002/chem.201101058. Epub 2011 Sep 16.
Skeletal analogues of saxitoxin (STX) that possess a fused-type tricyclic ring system, designated FD-STX, were synthesized as candidate sodium ion channel modulators. Three kinds of FD-STX derivatives 4a-c with different substitution at C13 were synthesized, and their inhibitory activity on sodium ion channels was examined by means of cell-based assay. (-)-FD-STX (4a) and (-)-FD-dcSTX (4b), which showed moderate inhibitory activity, were further evaluated by the use of the patch-clamp method in cells that expressed Na(V)1.4 (a tetrodotoxin-sensitive sodium channel subtype) and Na(V)1.5 (a tetrodotoxin-resistant sodium channel subtype). These compounds showed moderate inhibitory activity towards Na(V)1.4, and weaker inhibitory activity towards Na(V)1.5. Uniquely, however, the inhibition of Na(V)1.5 by (-)-FD-dcSTX (4b) was "irreversible".
作为候选钠离子通道调节剂,我们合成了具有融合型三环体系的石房蛤毒素(STX)类似物,命名为 FD-STX。我们合成了三种在 C13 位具有不同取代基的 FD-STX 衍生物 4a-c,并通过基于细胞的测定法检查了它们对钠离子通道的抑制活性。(-)-FD-STX(4a)和(-)-FD-dcSTX(4b)表现出中等抑制活性,并用表达 Na(V)1.4(河豚毒素敏感型钠离子通道亚型)和 Na(V)1.5(河豚毒素抗性钠离子通道亚型)的细胞中的膜片钳方法进行了进一步评估。这些化合物对 Na(V)1.4 表现出中等抑制活性,对 Na(V)1.5 的抑制活性较弱。然而,独特的是,(-)-FD-dcSTX(4b)对 Na(V)1.5 的抑制作用是“不可逆的”。