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GlcNAcstatins are nanomolar inhibitors of human O-GlcNAcase inducing cellular hyper-O-GlcNAcylation

机译:GlcNAcstatin是人O-GlcNAcase诱导细胞超O-GlcNAcy化的纳摩尔抑制剂

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摘要

O-GlcNAcylation is an essential, dynamic and inducible post-translational glycosylation of cytosolic proteins in metazoa and can show interplay with protein phosphorylation. Inhibition of OGA (O-GlcNAcase), the enzyme that removes O-GlcNAc from O-GlcNAcylated proteins, is a useful strategy to probe the role of this modification in a range of cellular processes. In the present study, we report the rational design and evaluation of GlcNAcstatins, a family of potent, competitive and selective inhibitors of human OGA. Kinetic experiments with recombinant human OGA reveal that the GlcNAcstatins are the most potent human OGA inhibitors reported to date, inhibiting the enzyme in the sub-nanomolar to nanomolar range. Modification of the GlcNAcstatin N-acetyl group leads to up to 160-fold selectivity against the human lysosomal hexosaminidases which employ a similar substrate-assisted catalytic mechanism. Mutagenesis studies in a bacterial OGA, guided by the structure of a GlcNAcstatin complex, provides insight into the role of conserved residues in the human OGA active site. GlcNAcstatins are cell-permeant and, at low nanomolar concentrations, effectively modulate intracellular O-GlcNAc levels through inhibition of OGA, in a range of human cell lines. Thus these compounds are potent selective tools to study the cell biology of O-GlcNAc.
机译:O-GlcNAcylation是后生动物中胞浆蛋白的必需,动态和可诱导的翻译后糖基化反应,可显示与蛋白磷酸化的相互作用。抑制OGA(O-GlcNAcase)是一种从O-GlcNAcyylated蛋白中去除O-GlcNAc的酶,是一种有用的策略,可探讨这种修饰在一系列细胞过程中的作用。在本研究中,我们报告了GlcNAcstatins(人OGA的有效,竞争性和选择性抑制剂家族)的合理设计和评估。重组人OGA的动力学实验表明,GlcNAcstatins是迄今为止报道的最有效的人OGA抑制剂,可抑制亚纳摩尔级至纳摩尔级的酶。 GlcNAcstatin N-乙酰基的修饰导致对人溶酶体己糖胺酶的选择性高达160倍,后者采用类似的底物辅助催化机制。在细菌OGA中的诱变研究受GlcNAcstatin复合物的结构指导,可深入了解保守残基在人OGA活性位点中的作用。 GlcNAcstatin具有细胞渗透性,在低纳摩尔浓度下,可通过抑制一系列人类细胞系中的OGA有效调节细胞内O-GlcNAc水平。因此,这些化合物是研究O-GlcNAc细胞生物学的有效选择工具。

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