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Selective TASK-1 Inhibitor with a Defined Structure-Activity Relationship Reduces Cancer Cell Proliferation and Viability

机译:具有明确构效关系的选择性 TASK-1 抑制剂可降低癌细胞增殖和活力

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摘要

Chemical structures of selective blockers of TASK channels contain aromatic groups and amide bonds. Using this rationale, we designed and synthesized a series of compounds based on 3-benzamidobenzoic acid. These compounds block TASK-1 channels by binding to the central cavity. The most active compound is 3-benzoylamino-N-(2-ethyl-phenyl)-benzamide or F3, blocking TASK-1 with an IC50 of 148 nM, showing a reduced inhibition of TASK-3 channels and not a significant effect on different K+ channels. We identified putative F3-binding sites in the TASK-1 channel by molecular modeling studies. Mutation of seven residues to A (I118A, L122A, F125A, Q126A, L232A, I235A, and L239A) markedly decreased the F3-induced inhibition of TASK-1 channels, consistent with the molecular modeling predictions. F3 blocks cell proliferation and viability in the MCF-7 cancer cell line but not in TASK-1 knockdown MCF-7 cells, indicating that it is acting in TASK-1 channels. These results indicated that TASK-1 is necessary to drive proliferation in the MCF-7 cancer cell line.
机译:TASK通道选择性阻断剂的化学结构包含芳香族基团和酰胺键。基于这一原理,我们设计并合成了一系列基于3-苯甲酰胺基苯甲酸的化合物。这些化合物通过与中心腔结合来阻断 TASK-1 通道。最活跃的化合物是 3-苯甲酰氨基-N-(2-乙基苯基)-苯甲酰胺或 F3,阻断 TASK-1,IC50 为 148 nM,显示对 TASK-3 通道的抑制降低,对不同的 K+ 通道没有显着影响。我们通过分子建模研究确定了 TASK-1 通道中假定的 F3 结合位点。A的7个残基(I118A、L122A、F125A、Q126A、L232A、I235A和L239A)突变显著降低了F3诱导的TASK-1通道抑制,与分子建模预测一致。F3 阻断 MCF-7 癌细胞系中的细胞增殖和活力,但不阻断 TASK-1 敲低 MCF-7 细胞,表明它在 TASK-1 通道中起作用。这些结果表明,TASK-1 是驱动 MCF-7 癌细胞系增殖所必需的。

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