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Exploring the O-GlcNAc proteome: Direct identification of O-GlcNAc-modified proteins from the brain

机译:探索O-GlcNAc蛋白质组:直接从大脑鉴定O-GlcNAc修饰的蛋白质

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摘要

The covalent modification of intracellular proteins by O-linked beta-N-acetylglucosamine (O-GlcNAc) is emerging as a crucial regulatory posttranslational modification akin to phosphorylation. Numerous studies point to the significance of O-GlcNAc in cellular processes such as nutrient sensing, protein degradation, and gene expression. Despite its importance, the breadth and functional roles of O-GlcNAc are only beginning to be elucidated. Advances in our understanding will require the development of new strategies for the detection and study of O-GlcNAc-modified proteins in vivo. Herein we report the direct, high-throughput analysis of O-GlcNAc-glycosylated proteins from the mammalian brain. The proteins were identified by using a chemoenzymatic approach that exploits an engineered galactosyltransferase enzyme to selectively label O-GlcNAc proteins with a ketone-biotin tag. The tag permits enrichment of low-abundance O-GlcNAc species from complex mixtures and localization of the modification to short amino acid sequences. Using this approach, we discovered 25 O-GlcNAc-glycosylated proteins from the brain, including regulatory proteins associated with gene expression, neuronal signaling, and synaptic plasticity. The functional diversity represented by this set of proteins suggests an expanded role for O-GlcNAc in regulating neuronal function. Moreover, the chemoenzymatic strategy described here should prove valuable for identifying O-GlcNAc-modified proteins in various tissues and facilitate studies of the physiological significance of O-GlcNAc across the proteome.
机译:O-连接的β-N-乙酰氨基葡糖(O-GlcNAc)对细胞内蛋白质进行的共价修饰正在成为类似于磷酸化的关键调控翻译后修饰。大量研究指出O-GlcNAc在细胞过程中的重要性,例如营养物感应,蛋白质降解和基因表达。尽管其重要性,O-GlcNAc的广度和功能作用才刚刚被阐明。在我们的理解上的进步将需要开发用于体内检测和研究O-GlcNAc修饰的蛋白质的新策略。本文中,我们报告了来自哺乳动物大脑的O-GlcNAc-糖基化蛋白的直接,高通量分析。通过使用化学酶方法鉴定蛋白质,该方法利用工程化的半乳糖基转移酶来选择性标记带有酮-生物素标签的O-GlcNAc蛋白。该标签允许从复杂混合物中富集低丰度O-GlcNAc物种,并将修饰定位于短氨基酸序列。使用这种方法,我们从大脑中发现了25种O-GlcNAc-糖基化蛋白,包括与基因表达,神经元信号传导和突触可塑性相关的调节蛋白。这组蛋白质代表的功能多样性表明,O-GlcNAc在调节神经元功能中起着扩展的作用。此外,此处描述的化学酶策略应被证明对鉴定各种组织中O-GlcNAc修饰的蛋白质有价值,并有助于研究整个蛋白质组中O-GlcNAc的生理意义。

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