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首页> 外文期刊>Nature chemical biology >Covalent and allosteric inhibitors of the ATPase VCP/p97 induce cancer cell death
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Covalent and allosteric inhibitors of the ATPase VCP/p97 induce cancer cell death

机译:ATPase VCP / p97的共价和变构抑制剂诱导癌细胞死亡

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摘要

VCP (also known as p97 or Cdc48p in yeast) is an AAA + ATPase regulating endoplasmic reticulum-associated degradation. After high-throughput screening, we developed compounds that inhibit VCP via different mechanisms, including covalent modification of an active site cysteine and a new allosteric mechanism. Using photoaffinity labeling, structural analysis and mutagenesis, we mapped the binding site of allosteric inhibitors to a region spanning the D1 and D2 domains of adjacent protomers encompassing elements important for nucleotide-state sensing and ATP hydrolysis. These compounds induced an increased affinity for nucleotides. Interference with nucleotide turnover in individual subunits and distortion of interprotomer communication cooperated to impair VCP enzymatic activity. Chemical expansion of this allosteric class identified NMS-873, the most potent and specific VCP inhibitor described to date, which activated the unfolded protein response, interfered with autophagy and induced cancer cell death. The consistent pattern of cancer cell killing by covalent and allosteric inhibitors provided critical validation of VCP as a cancer target.
机译:VCP(在酵母中也称为p97或Cdc48p)是调节内质网相关降解的AAA + ATPase。经过高通量筛选后,我们开发了通过不同机制抑制VCP的化合物,包括共价修饰活性位点半胱氨酸和新的变构机制。使用光亲和标记,结构分析和诱变,我们将变构抑制剂的结合位点映射到跨越相邻protomer的D1和D2域的区域,其中包含对核苷酸状态检测和ATP水解很重要的元素。这些化合物诱导了对核苷酸的增加的亲和力。干扰单个亚基的核苷酸更新和间质通讯的扭曲合作削弱VCP酶活性。这种变构类别的化学扩增鉴定出NMS-873,这是迄今为止描述的最有效和最特异性的VCP抑制剂,它可以激活未折叠的蛋白质反应,干扰自噬并诱导癌细胞死亡。共价和变构抑制剂杀死癌细胞的一致模式为VCP作为癌症靶标提供了关键的验证。

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