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Several inhibitors of the Plk1 Polo-Box Domain turn out to be non-specific protein alkylators

机译:PLK1 Polo-Box结构域的几种抑制剂结果是非特异性蛋白质烷化剂

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For almost a decade, there has been much interest in the development of chemical inhibitors of Polo-like kinase 1 (Plk1) protein interactions. Plk1 is a master regulator of the cell division cycle that controls numerous substrates. It is a promising target for cancer drug development. Inhibitors of the kinase domain of Plk1 had some success in clinical trials. However, they are not perfectly selective. In principle, Plk1 can also be inhibited by interfering with its protein interaction domain, the Polo-Box Domain (PBD). Selective chemical inhibitors of the PBD would constitute tools to probe for PBD-dependent functions of Plk1 and could be advantageous in cancer therapy. The discovery of Poloxin and thymoquinone as PBD inhibitors indicated that small, cell-permeable chemical inhibitors could be identified. Other efforts followed, including ours, reporting additional molecules capable of blocking the PBD. It is now clear that, unfortunately, most of these compounds are non-specific protein alkylators (defined here as groups covalently added via a carbon) that have little or no potential for the development of real Plk1 PBD-specific drugs. This situation should be minded by biologists potentially interested in using these compounds to study Plk1. Further efforts are needed to develop selective, cell-permeable PBD inhibitors.
机译:近十年来,对Polo样激酶1(PLK1)蛋白质相互作用的化学抑制剂的发展有很多兴趣。 PLK1是控制许多基板的细胞分割周期的主调节器。这是癌症药物发育的有希望的目标。 PLK1激酶结构域的抑制剂在临床试验中取得了一些成功。但是,它们并不完全选择性。原则上,通过干扰其蛋白质相互作用域,POL箱结构域(PBD)也可以抑制PLK1。 PBD的选择性化学抑制剂将构成PBD依赖性功能探针的工具,并且在癌症治疗中可能是有利的。作为PBD抑制剂的发现,脊生和紫喹啉的发现表明,可以鉴定小型细胞可渗透的化学抑制剂。其他努力,包括我们的努力,报告了能够阻止PBD的其他分子。现在,遗憾的是,遗憾的是,大多数这些化合物是非特异性蛋白质烷基化物(在此定义为通过碳共价加入的基团),其对实际PLK1特异性药物的发育很少或没有潜力。这种情况应该被潜在兴趣使用这些化合物研究PLK1的生物学家。需要进一步努力来开发选择性细胞渗透性PBD抑制剂。

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