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Strategies for the profiling, characterisation and detailed structural analysis of N-linked oligosaccharides

机译:N-连接寡糖的分析,表征和详细结构分析的策略

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摘要

Many post-translational modifications, including glycosylation, are pivotal for the structural integrity, location and functional activity of glycoproteins. Subpopulations of proteins that are relocated or functionally changed by such modifications can change resting proteins into active ones, mediating specific effector functions, as in the case of monoclonal antibodies. To ensure safe and efficacious drugs it is essential to employ appropriate robust, quantitative analytical strategies that can (i) perform detailed glycan structural analysis, (ii) characterise specific subsets of glycans to assess known critical features of therapeutic activities (iii) rapidly profile glycan pools for at-line monitoring or high level batch to batch screening. Here we focus on these aspects of glycan analysis, showing how state-ofthe-art technologies are required at all stages during the production of recombinant glycotherapeutics. These data can provide insights into processing pathways and suggest markers for intervention at critical control points in bioprocessing and also critical decision points in disease and drug monitoring in patients. Importantly, these tools are now enabling the first glycome/genome studies in large populations, allowing the integration of glycomics into other 'omics platforms in a systems biology context.
机译:许多翻译后修饰,包括糖基化,对于糖蛋白的结构完整性,位置和功能活性至关重要。通过这种修饰而被重新定位或功能改变的蛋白质亚群可以将静止的蛋白质转变为活性蛋白质,从而介导特定的效应子功能,如单克隆抗体一样。为了确保药物安全有效,必须采用适当的鲁棒,定量分析策略,这些策略可以(i)执行详细的聚糖结构分析,(ii)表征特定的聚糖子集,以评估治疗活性的已知关键特征(iii)快速分析聚糖在线监测或高级批次间筛选的库。在这里,我们着重于聚糖分析的这些方面,展示了在生产重组糖治疗剂的各个阶段如何需要最新的技术。这些数据可以提供对加工途径的洞察力,并建议在生物加工的关键控制点以及患者疾病和药物监测的关键决策点进行干预的标记。重要的是,这些工具现在使大规模人群中的首个糖组/基因组研究成为可能,并允许在系统生物学背景下将糖组学整合到其他“组学”平台中。

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