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Targeting Enzymes Involved in Protein Translation and Quality Control as Potential Cancer Therapeutics

机译:靶向酶参与蛋白质翻译和质量控制作为潜在的癌症治疗方法

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摘要

Activation of pathways resulting in an overexpression of oncoproteins, reliant on cap-dependent translation, or mutations of key proteins in a pathway can be advantageous to cancer cells but creates heightened protein quality control pressure. Because of this, there has been an interest in targeting enzymes involved in protein synthesis and protein quality control: such as the eukaryotic initiation factor, eIF4A, a DEAD-box RNA helicase involved in translation initiation, and p97, an AAA+ chaperone involved in protein quality control. Despite some successes in discovering both eIF4A and p97 inhibitors, many of these compounds have pharmacological setbacks. The work in this dissertation defines new inhibitors of eIF4A and p97 with unique mechanisms of action. As described in chapter 2, we demonstrated that a marine-derived sesquiterpene, elatol, can modulate the ATPase activity of eIF4A. We provide further evidence that this molecule inhibits cap-dependent translation. Because there is no clear consensus on the mechanism of action for elatol, we hypothesized that the mechanism of toxicity attributed to elatol is likely through inhibition of cap-dependent translation initiation by targeting eIF4A. In chapter 3, we adapted a colorimetric assay to identify natural products that modulate the ATPase activity of p97 from which withaferin A (WFA) was identified. Because proteostasis modulation can connect each of the reported modes of action of WFA, we hypothesized that the primary mode of cytotoxic action of WFA is through inhibition of protein quality control machinery. Through medicinal chemistry efforts, we were able to improve WFA's biochemical and cellular activities as well as shifting the activity toward p97 and away from the proteasome. The work described in chapter 4 reports that dehydrocurvularin (DHC) and its chlorinated analogs are covalent modifiers of p97 and that the selectivity toward p97 can be attributed, in part, to the electronic effects of the chlorines. Taken together, this work highlights the significance of targeting protein translation and quality control, by modulation of eIF4A and p97 activity respectively, as promising anticancer therapeutics.
机译:导致癌蛋白过度表达,依赖于帽依赖性翻译或途径中关键蛋白质突变的途径的激活对癌细胞可能是有利的,但会增加蛋白质质量控​​制压力。因此,对靶向参与蛋白质合成和蛋白质质量控​​制的酶产生了兴趣:诸如真核生物起始因子,参与翻译起始的DEAD-box RNA解旋酶eIF4A和参与蛋白质的AAA +伴侣蛋白p97。质量控制。尽管在发现eIF4A和p97抑制剂方面均取得了一些成功,但这些化合物中有许多在药理上都受到挫折。本文的工作定义了具有独特作用机制的新的eIF4A和p97抑制剂。如第2章所述,我们证明了海洋来源的倍半萜烯elatol可调节eIF4A的ATPase活性。我们提供了进一步的证据,表明该分子抑制了帽依赖性翻译。由于在埃拉托尔的作用机理上尚无明确共识,因此我们推测归因于埃拉托尔的毒性机理很可能是通过靶向eIF4A抑制帽依赖性翻译起始而实现的。在第3章中,我们采用了比色测定法来鉴定天然产物,这些产物可调节p97的ATPase活性,并从中鉴定出aferin A(WFA)。由于蛋白稳态调节可以联系WFA的每个报道的作用方式,我们假设WFA的细胞毒性作用的主要方式是通过抑制蛋白质质量控​​制机制。通过药物化学的努力,我们能够改善WFA的生化和细胞活性,以及​​将其活性转移到p97而不是蛋白酶体上。在第4章中描述的工作报告说,脱氢卡维拉林(DHC)及其氯化类似物是p97的共价修饰剂,对p97的选择性可以部分归因于氯的电子效应。综上所述,这项工作突出了通过分别调节eIF4A和p97活性来靶向蛋白质翻译和质量控制的重要性,作为有希望的抗癌治疗剂。

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    Tillotson Joseph;

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  • 年度 2016
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