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Cellularly active N-hydroxyurea FEN1 inhibitors block substrate entry to the active site

机译:细胞活性的N-羟基脲FEN1抑制剂阻止底物进入活性位点

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摘要

The structure-specific nuclease human flap endonuclease-1 (hFEN1) plays a key role in DNA replication and repair and may be of interest as an oncology target. We present the crystal structure of inhibitor-bound hFEN1, which shows a cyclic N-hydroxyurea bound in the active site coordinated to two magnesium ions. Three such compounds had similar IC50 values but differed subtly in mode of action. One had comparable affinity for protein and protein–substrate complex and prevented reaction by binding to active site catalytic metal ions, blocking the necessary unpairing of substrate DNA. Other compounds were more competitive with substrate. Cellular thermal shift data showed that both inhibitor types engaged with hFEN1 in cells, and activation of the DNA damage response was evident upon treatment with inhibitors. However, cellular EC50 values were significantly higher than in vitro inhibition constants, and the implications of this for exploitation of hFEN1 as a drug target are discussed.
机译:结构特异性核酸酶人皮瓣内切核酸酶-1(hFEN1)在DNA复制和修复中起关键作用,可能作为肿瘤靶标而引起关注。我们介绍了抑制剂结合的hFEN1的晶体结构,它显示了在活性位点结合两个镁离子的环状N-羟基脲。三种此类化合物的IC50值相似,但作用方式略有不同。一种具有与蛋白质和蛋白质-底物复合物相当的亲和力,并通过与活性位点催化金属离子结合来阻止反应,从而阻止了底物DNA必要的不配对。其他化合物与底物相比更具竞争力。细胞的热位移数据表明,两种抑制剂类型都与细胞中的hFEN1结合,并且在用抑制剂处理后,DNA损伤反应的激活是明显的。但是,细胞EC50值明显高于体外抑制常数,并讨论了其对于将hFEN1用作药物靶标的意义。

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