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Defining the structural origin of the substrate sequence independence of O-GlcNAcase using a combination of molecular docking and dynamics simulation

机译:结合分子对接和动力学模拟确定O-GlcNAcase底物序列独立性的结构来源

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摘要

Protein glycosylation with O-linked N-acetylglucosamine (O-GlcNAc) is a post-translational modification of serine/threonine residues in nucleocytoplasmic proteins. O-GlcNAc has been shown to play a role in many different cellular processes and O-GlcNAcylation is often found at sites that are also known to be phosphorylated. Unlike phosphorylation, O-GlcNAc levels are regulated by only two enzymes, O-GlcNAc transferase (OGT) and O-GlcNAc hydrolase (O-GlcNAcase or OGA). So far, no obvious consensus sequence has been found for sites of O-GlcNAcylation. Additionally, O-GlcNAcase recognizes and cleaves all O-GlcNAcylated proteins, independent of their sequence. In this work, we generate and analyze five models of O-GlcNAcylated peptides in complex with a bacterial OGA. Each of the five glycopeptides bind to OGA in a similar fashion, with OGA–peptide interactions primarily, but not exclusively, involving the peptide backbone atoms, thus explaining the lack of sensitivity to peptide sequence. Nonetheless, differences in peptide sequences, particularly at the −1 to −4 positions, lead to variations in predicted affinity, consistent with observed experimental variations in enzyme kinetics. The potential exists, therefore, to employ the present analysis to guide the development glycopeptide-specific inhibitors, or conversely, the conversion of OGA into a reagent that could target specific O-GlcNAcylated peptide sequences.
机译:O-连接的N-乙酰氨基葡萄糖(O-GlcNAc)进行的蛋白质糖基化是胞浆蛋白中丝氨酸/苏氨酸残基的翻译后修饰。 O-GlcNAc已显示出在许多不同的细胞过程中发挥作用,并且O-GlcNAcylation通常在也被磷酸化的位点发现。与磷酸化不同,O-GlcNAc的水平仅受两种酶调节,即O-GlcNAc转移酶(OGT)和O-GlcNAc水解酶(O-GlcNAcase或OGA)。迄今为止,尚未发现O-GlcNAcylation位点的明显共有序列。另外,O-GlcNAcase识别并切割所有O-GlcNAcylated蛋白,而与它们的序列无关。在这项工作中,我们生成并分析了O-GlcNAcylated肽与细菌OGA的复合物的五个模型。五个糖肽中的每一个都以相似的方式与OGA结合,其中OGA与肽的相互作用主要但并非唯一地涉及肽骨架原子,因此可以解释为对肽序列缺乏敏感性。但是,肽序列的差异,特别是在-1至-4位的差异,导致预测的亲和力发生变化,这与观察到的酶动力学实验变化一致。因此,存在利用本分析指导糖肽特异性抑制剂发展的潜力,或者相反,将OGA转化为可以靶向特定O-GlcNAcylated肽序列的试剂的潜力。

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