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Identification of small molecule inhibitors of Zcchc11 TUTase activity

机译:鉴定Zcchc11 TUTase活性的小分子抑制剂

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The RNA-binding protein Lin28 regulates the expression of the let-7 family of microRNAs (miRNAs) during early embryonic development. Lin28 recruits the 3 terminal uridylyl transferase (TUTase) Zcchc11 (TUT4) and/or Zcchc6 (TUT7) to precursor let-7 RNA (pre-let-7) to selectively block let-7 biogenesis. Uridylated pre-let-7 is targeted for decay by the downstream exonuclease Dis3l2 thereby preventing processing to mature let-7. Activation of this oncogenic pathway via up-regulation of Lin28 expression promotes cellular transformation, drives tumorigenesis in mouse models, and is frequently observed in a wide variety of cancer. Recent proof-of-principle experiments showed that Zcchc11 knockdown inhibits the tumorigenicity of Lin28-expressing human cancer cells and established this enzyme as a possible new therapeutic target for human malignancies. However, there are currently no known pharmacological agents capable of targeting this novel enzyme. In this study we developed and applied a sensitive biochemical assay that monitors Zcchc11 activity. Using this assay we performed an automated high-throughput screen of approximate to 15,000 chemicals to identify putative TUTase inhibitors. Several of these small molecules were validated as specific inhibitors of Zcchc11 activity. Our results demonstrate the feasibility of screening for TUTase inhibitors and present a relatively simple platform that can be exploited for future drug discovery efforts aimed at restoring let-7 expression in cancer.
机译:RNA结合蛋白Lin28在早期胚胎发育过程中调节let-7家族的microRNA(miRNA)表达。 Lin28募集了3末端的尿嘧啶转移酶(TUTase)Zcchc11(TUT4)和/或Zcchc6(TUT7)到let-7 RNA(pre-let-7)的前体,以选择性地阻断let-7生物发生。 Uridylated pre-let-7被下游的核酸外切酶Dis3l2靶向降解,从而阻止了let-7的成熟。通过Lin28表达的上调激活该致癌途径可促进细胞转化,在小鼠模型中驱动肿瘤发生,并且在多种癌症中经常观察到。最近的原理证明实验表明,Zcchc11基因敲低抑制了表达Lin28的人类癌细胞的致瘤性,并将这种酶确立为人类恶性肿瘤的可能新治疗靶标。但是,目前尚无能够靶向这种新型酶的已知药理剂。在这项研究中,我们开发并应用了一种敏感的生化测定法来监测Zcchc11的活性。使用该测定法,我们对大约15,000种化学药品进行了自动化的高通量筛选,以鉴定推定的TUTase抑制剂。这些小分子中的几个已被证实是Zcchc11活性的特异性抑制剂。我们的结果证明了筛选TUTase抑制剂的可行性,并提供了一个相对简单的平台,可用于未来旨在恢复let-7表达的药物开发工作。

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