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首页> 外文期刊>Bioorganic and medicinal chemistry >Development of a new class of proteasome inhibitors with an epoxyketone warhead: Rational hybridization of non-peptidic belactosin derivatives and peptide epoxyketones
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Development of a new class of proteasome inhibitors with an epoxyketone warhead: Rational hybridization of non-peptidic belactosin derivatives and peptide epoxyketones

机译:新型具有环氧酮战斗部的蛋白酶体抑制剂的开发:非肽类贝拉糖酶衍生物与肽类环氧酮的合理杂交

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摘要

Proteasome inhibitors are currently a focus of increased attention as anticancer drug candidates. We recently performed systematic structure-activity relationship studies of the peptidic natural product belactosin A and identified non-peptidic derivative 2 as a highly potent proteasome inhibitor. However, the cell growth inhibitory effect of 2 is only moderate, probably due to the biologically unstable β-lactone warhead. Peptide epoxyketones are an important class of proteasome inhibitors exhibit high potency in cellular systems based on the efficient α,β-epoxyketone warhead. Importantly, belactosin derivatives bind primarily to the primed binding site, while peptide epoxyketones bind only to the non-primed binding site of proteasome, suggesting that hybridization of them might lead to the development of a new class of proteasome inhibitors. Thus, we successfully identified a novel chemotype of proteasome inhibitors 3 and 4 by rational structure-based design, which are expected to bind to both the primed and non-primed binding sites of proteasome.
机译:蛋白酶体抑制剂作为抗癌药物的候选者目前是越来越受到关注的焦点。我们最近对肽类天然产物贝洛糖素A进行了系统的结构-活性关系研究,并确定了非肽类衍生物2是高效的蛋白酶体抑制剂。但是,2的细胞生长抑制作用只是中等程度的,可能是由于生物学上不稳定的β-内酯战斗部所致。肽环氧酮是一类重要的蛋白酶体抑制剂,基于有效的α,β-环氧酮战斗部,在细胞系统中显示出强大的效能。重要的是,Belactosin衍生物主要与引发的结合位点结合,而肽环氧酮仅与蛋白酶体的非引发的结合位点结合,这表明它们的杂交可能导致开发新型的蛋白酶体抑制剂。因此,我们通过合理的基于结构的设计成功地鉴定了蛋白酶体抑制剂3和4的新型化学型,它们有望与蛋白酶体的引发和非引发结合位点结合。

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