Department of Chemical Engineering and Chemical Technology, Imperial College London, South Kensington Campus, London SW7 2AZ, UK.
Anal Biochem. 2013 Dec 15;443(2):172-80. doi: 10.1016/j.ab.2013.09.005. Epub 2013 Sep 11.
Glycosylation is a critical attribute of therapeutic proteins given its impact on the clinical safety and efficacy of these molecules. The biochemical process of glycosylation is inextricably dependent on metabolism and ensuing availability of nucleotides and nucleotide sugars (NSs) during cell culture. Herein, we present a comprehensive methodology to extract and quantify these metabolites from cultured cells. To establish the full protocol, two methods for the extraction of these compounds were evaluated for efficiency, and the requirement for quenching and washing the sample was assessed. A chromatographic method based on anion exchange has been optimized to separate and quantify eight nucleotides and nine NSs in less than 30 min. Degradation of nucleotides and NSs under extraction conditions was evaluated to aid in selection of the most efficient extraction protocol. We conclude that the optimized chromatographic method is quick, robust, and sensitive for quantifying nucleotides and NSs. Furthermore, our results show that samples taken from cell culture should be treated with 50% v/v acetonitrile and do not require quenching or washing for reliable extraction of nucleotides and NSs. This comprehensive protocol should prove useful in determining the impact of nucleotide and NS metabolism on protein glycosylation.
糖基化是治疗性蛋白质的一个关键属性,因为它会影响这些分子的临床安全性和疗效。糖基化的生化过程与代谢过程以及细胞培养过程中核苷酸和核苷酸糖(NSs)的后续可用性密不可分。在此,我们提出了一种从培养细胞中提取和定量这些代谢物的综合方法。为了建立完整的方案,我们评估了两种提取这些化合物的方法的效率,并评估了对样品进行淬灭和洗涤的要求。基于阴离子交换的色谱方法已得到优化,可在不到 30 分钟的时间内分离和定量八种核苷酸和九种 NSs。评估了核苷酸和 NSs 在提取条件下的降解情况,以帮助选择最有效的提取方案。我们得出的结论是,优化的色谱方法快速、稳健且灵敏,可用于定量核苷酸和 NSs。此外,我们的结果表明,应使用 50%(v/v)乙腈处理来自细胞培养物的样品,并且不需要淬灭或洗涤即可可靠地提取核苷酸和 NSs。该综合方案对于确定核苷酸和 NS 代谢对蛋白质糖基化的影响应该很有用。