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Investigation of Sample Preparation Artifacts Formed during the Enzymatic Release of N-Linked Glycans prior to Analysis by Capillary Electrophoresis

机译:在通过毛细管电泳进行分析之前,在酶法释放N-连接的聚糖过程中形成的样品制备工件的研究

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In the biotechnology industry, highly sensitive and accurate methods are required for monitoring glycosylation of therapeutic recombinant monoclonal antibodies (rMAbs) due to possible effects on bioactivity. At Genentech, a method employing PNGase F digestion, fluorescent labeling of released glycans, and analysis by capillary electrophoresis (CE) is used for routine monitoring of N-linked glycosylation during process development and quality control of therapeutic glycoproteins. In our laboratory, capillary electrophoresis-mass spectrometry (CE-MS) technology was developed to identify minor glycan species in assay and it revealed several unidentified isomeric species. Additional studies indicate that these species (1-10percent total glycans) are sample preparation artifacts caused by base-catalyzed epimerization of N-acetylglucosamine (GlcNAc) at the reducing terminus by following the use of commercially available PNGase F and the supplied incubation buffer (pH 7.5). As these isomeric species directly impact the accuracy of the reported results, an optimized PNGase F release step is presented which minimizes and/or eliminates the formation of these artifacts. We have found that PNGase F incubation at pH 5.5 for IgG_(1) rMAbs shows no significant decrease in enzyme activity while minimizing GlcNAc epimerization. Implementation of this change has resulted in a more accurate and robust CE-laser-induced fluorescence (LIF) assay and is generally applicable to any analysis requiring PNGase F digestion of rMAbs.
机译:在生物技术行业中,由于可能会对生物活性产生影响,因此需要高度灵敏,准确的方法来监测治疗性重组单克隆抗体(rMAb)的糖基化。在Genentech,使用PNGase F消化,释放的聚糖的荧光标记以及通过毛细管电泳(CE)进行分析的方法,用于过程开发和治疗性糖蛋白质量控制期间的N联糖基化常规监测。在我们的实验室中,开发了毛细管电泳质谱(CE-MS)技术来鉴定测定中的次要聚糖种类,并揭示了几种未鉴定的异构体。进一步的研究表明,这些物种(总聚糖的1-10%)是样品还原伪影,是由于在使用还原酶末端的碱催化下N-乙酰氨基葡萄糖(GlcNAc)的差向异构化而引起的,方法是使用市售PNGase F和提供的孵育缓冲液(pH 7.5)。由于这些异构体直接影响所报告结果的准确性,因此提出了优化的PNGase F释放步骤,该步骤可最大程度地减少和/或消除这些伪影的形成。我们已经发现,在pH 5.5下孵育IgG_(1)rMAb的PNGase F在酶活性没有显着降低的同时最小化了GlcNAc的差向异构化。实施此更改已导致更准确,更可靠的CE激光诱导的荧光(LIF)分析,并且通常适用于需要PNGase F消化rMAb的任何分析。

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