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首页> 外文期刊>Molecular pharmacology. >Thiosemicarbazones Functioning as Zinc Metallochaperones to Reactivate Mutant p53
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Thiosemicarbazones Functioning as Zinc Metallochaperones to Reactivate Mutant p53

机译:用作锌金属体上的硫代虫虫,重新激活突变体p53

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摘要

Small-molecule restoration of wild-type structure and function to mutant p53 (so-called mutant reactivation) is a highly sought-after goal in cancer drug development. We previously discovered that small-molecule zinc chelators called zinc metallochaperones (ZMCs) reactivate mutant p53 by restoring zinc binding to zinc-deficient p53 mutants. The lead compound identified from the NCI-60 human tumor cell lines screen, NSC319726 (ZMC1), belongs to the thiosemicarbazone (TSC) class of metal ion chelators that bind iron, copper, magnesium, zinc, and other transition metals. Here, we have investigated the other TSCs, NSC319725 and NSC328784, identified in the same screen, as well as the more well studied TSC, 3-AP (Triapine), to determine whether they function as ZMCs. We measured the zinc K-d zinc ionophore activity, ability to restore zinc to purified p53 DNA binding domain (DBD), and ability to restore site-specific DNA binding to purified R175H-DBD in vitro. We tested all four TSCs in a number of cell-based assays to examine mutant p53 reactivation and the generation of reactive oxygen species (ROS). We found that NSC319725 and NSC328784 behave similarly to ZMC1 in both biophysical and cell-based assays and are heretofore named ZMC2 (NSC319725) and ZMC3 (NSC328784). 3-AP generates a ROS signal similar to ZMC1-3, but it fails to function as a ZMC both in vitro and in cells and ultimately does not reactivate p53. These findings indicate that not all TSCs function as ZMCs, and much of their activity can be predicted by their affinity for zinc.
机译:野生型结构的小分子恢复和突变体P53(所谓的突变反应)是癌症药物发育的高度追捧的目标。我们以前发现,通过恢复与锌缺陷P53突变体的锌结合来重新激活突变体P53的小分子锌螯合剂。从NCI-60人肿瘤细胞系筛网中鉴定的铅化合物NSC319726(ZMC1)属于硫代金属离子螯合剂,其粘合铁,铜,镁,锌和其他过渡金属。在这里,我们研究了在同一屏幕中识别的其他TSC,NSC319725和NSC328784,以及越来越多的TSC,3-AP(三角峰),以确定它们是否用作ZMC。我们测量了锌K-D锌离子载体活性,恢复锌的能力以纯化P53 DNA结合结构域(DBD),以及恢复特异性DNA与体外纯化R175H-DBD的能力。我们在许多基于细胞的测定中测试了所有四种TSC,以检查突变体P53再激活和反应性氧(ROS)的产生。我们发现NSC319725和NSC328784与基于生物物理和细胞的测定中的ZMC1类似,并且迄今为止命名为ZMC2(NSC319725)和ZMC3(NSC328784)。 3-AP产生类似于ZMC1-3的ROS信号,但它不能在体外和细胞中作为ZMC发挥作用,并且最终不会重新激活P53。这些发现表明,并非所有TSCS都函数作为ZMC,并且它们对其对锌的亲和力可以预测的大部分活动。

著录项

  • 来源
    《Molecular pharmacology. 》 |2017年第6期| 共11页
  • 作者单位

    Rutgers State Univ Rutgers Canc Inst New Jersey New Brunswick NJ USA;

    SUNY Upstate Med Univ Dept Biochem &

    Mol Biol 4249 Weiskotten Hall 766 Irving Ave Syracuse NY;

    Rutgers State Univ Rutgers Canc Inst New Jersey New Brunswick NJ USA;

    Rutgers State Univ Rutgers Canc Inst New Jersey New Brunswick NJ USA;

    Rutgers State Univ Rutgers Canc Inst New Jersey New Brunswick NJ USA;

    Rutgers State Univ Dept Med Chem Rutgers Ernest Mario Sch Pharm New Brunswick NJ USA;

    Rutgers State Univ Dept Med Chem Rutgers Ernest Mario Sch Pharm New Brunswick NJ USA;

    Rutgers State Univ Rutgers Translat Sci Dept Chem &

    Chem Biol New Brunswick NJ USA;

    SUNY Upstate Med Univ Dept Biochem &

    Mol Biol 4249 Weiskotten Hall 766 Irving Ave Syracuse NY;

    Rutgers State Univ Rutgers Canc Inst New Jersey New Brunswick NJ USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学 ;
  • 关键词

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