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基于凝集素蛋白微阵列和 MALDI-MS 分析培养基成分对重组单克隆 IgA1 糖基化的影响。

Influence of media composition on recombinant monoclonal IgA1 glycosylation analysed by lectin-based protein microarray and MALDI-MS.

机构信息

Institute of Chemistry, Slovak Academy of Sciences, Bratislava, Slovakia.

Department of Chemical Enzymology, School of Chemistry, Lomonosov Moscow State University, Moscow, Russia.

出版信息

J Biotechnol. 2020 May 20;314-315:34-40. doi: 10.1016/j.jbiotec.2020.03.009. Epub 2020 Apr 13.

Abstract

Glycosylation of therapeutic glycoproteins significantly affects their physico-chemical properties, bioactivity and immunogenicity. The determination of glycan composition is highly important regarding their development and production. Therefore, there is a demand for analytical techniques enabling rapid and reliable glycoprofiling of therapeutic proteins. For the investigation of changes in glycan structures, we have employed two platforms: lectin-based protein microarray, and MALDI-MS. In lectin-based microarray analysis, the samples of IgA were printed on the microarray slide, incubated with the set of lectins with various specificity and evaluation of changes in glycosylation was based on differences in reactivity of samples with lectins. MALDI-MS was used for N-glycan analysis of IgA1 samples. IgAs are effective as therapeutic agents in defense against viruses that use sialic acid as a receptor. Dimeric IgA1 antibodies were produced by stable cell line IgA1/2G9 on the basal medium at different conditions (different supplementation and feeding) and we also evaluated the effect of different conditions on lactate production, which correlates with IgA productivity. Decrease of lactate levels was observed during supplementation with succinic acid, asparagine, or with mannose feeding. We found by lectin-based microarray analysis that the metabolic shift from glutamine to asparagine or feeding with glucose caused increase of high mannose type glycans what was confirmed also by MALDI-MS. Among other changes in IgA glycosylation determined by lectin-based protein microarray were, for example, reduced galactosylation after supplementation with succinic acid and increase of both sialylation and galactosylation after supplementation with glutamine and feeding with mannose. The elucidation of mechanism of determined changes requires further investigation, but the described analytical approach represent effective platform for determination, screening and evaluation of glycosylation of therapeutic proteins.

摘要

糖基化治疗性糖蛋白会显著影响其理化性质、生物活性和免疫原性。糖基化组成的测定对于其开发和生产非常重要。因此,需要分析技术来快速可靠地对治疗性蛋白进行糖基化分析。为了研究糖链结构的变化,我们采用了两种平台:基于凝集素的蛋白质微阵列和 MALDI-MS。在基于凝集素的微阵列分析中,IgA 样本被打印在微阵列载玻片上,与具有不同特异性的凝集素孵育,基于样本与凝集素的反应性差异来评估糖基化的变化。MALDI-MS 用于 IgA1 样本的 N-糖基化分析。IgA 在防御以唾液酸为受体的病毒方面是有效的治疗剂。二聚体 IgA1 抗体由稳定细胞系 IgA1/2G9 在基础培养基中不同条件(不同补充和喂养)下产生,我们还评估了不同条件对乳酸产量的影响,乳酸产量与 IgA 生产率相关。在补充琥珀酸、天冬酰胺或甘露糖喂养时,观察到乳酸水平下降。通过基于凝集素的微阵列分析发现,从谷氨酰胺向天冬酰胺的代谢转变或用葡萄糖喂养会导致高甘露糖型糖基增加,这也通过 MALDI-MS 得到证实。通过基于凝集素的蛋白质微阵列确定的 IgA 糖基化的其他变化包括,例如,在补充琥珀酸后半乳糖基化减少,在补充谷氨酰胺和用甘露糖喂养后唾液酸化和半乳糖基化增加。确定变化的机制阐明需要进一步研究,但所描述的分析方法代表了用于确定、筛选和评估治疗性蛋白糖基化的有效平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b32f/7194684/ead7e60dfa61/gr1_lrg.jpg

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