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在毕赤酵母中生产靶向肿瘤的单克隆抗体 H10 的不同糖基化变体:对表达产量和抗体降解的影响。

Production of different glycosylation variants of the tumour-targeting mAb H10 in Nicotiana benthamiana: influence on expression yield and antibody degradation.

机构信息

ENEA, Laboratorio Biotecnologie, UTBIORAD, C.R. Casaccia, Via Anguillarese 301, 00123, Rome, Italy.

出版信息

Transgenic Res. 2012 Oct;21(5):1005-21. doi: 10.1007/s11248-012-9587-1. Epub 2012 Jan 12.

Abstract

We previously described the expression of a tumour-targeting antibody (mAb H10) in Nicotiana benthamiana by vacuum-agro-infiltration and the remarkable yields of highly pure protein achieved. The objective of the present work was to investigate different strategies for transient overexpression of the mAb H10 in which glycan configuration was modulated and assess how these strategies affect the accumulation yield and stability of the antibody. To this aim, three procedures have been assayed: (1) Site-directed mutagenesis to abolish the glycosylation site; (2) endoplasmic reticulum retention (C-terminal SEKDEL fusion) to ensure predominantly high-mannose type glycans; and (3) expression in a N. benthamiana RNAi down-regulated line in which β1,2-xylosyltransferase and α1,3-fucosyltransferase gene expression is silenced. The three antibody variants (H10-Mut) (H10-SEKDEL) (H10(XylT/FucT)) were transiently expressed, purified and characterised for their glycosylation profile, expression/purification yield and antibody degradation pattern. Glycosylation analysis of H10(XylT/FucT) demonstrated the absence of plant complex-type sugars, while H10-SEKDEL, although substantially retained in the ER, revealed the presence of β1,2-xylose and α1,3-fucose residues, indicating a partial escape from the ER retrieval system. Antibody accumulation and purification yields were not enhanced by ER retention. All H10 antibody glyco-forms revealed greater degradation compared to the original, resulting mostly in the formation of Fab fragments. In the case of aglycosylated H10-Mut, more than 95% of the heavy chain was cleaved, confirming the pivotal role of the sugar moiety in protein stability. Identification of possible 'fragile' sites in the H10 antibody hinge region could be of general interest for the development of new strategies to reduce antibody degradation and increase the yield of intact IgGs in plants.

摘要

我们之前通过真空渗透法在 Nicotiana benthamiana 中表达了一种肿瘤靶向抗体(mAb H10),并获得了高纯度的大量蛋白质。本研究的目的是研究不同的瞬时过表达 mAb H10 的策略,其中糖基化构型得到了调制,并评估这些策略如何影响抗体的积累产量和稳定性。为此,我们测试了三种方法:(1)定点突变以消除糖基化位点;(2)内质网保留(C 端 SEKDEL 融合)以确保主要是高甘露糖型糖基化;(3)在沉默 β1,2-木糖基转移酶和 α1,3-岩藻糖基转移酶基因表达的 N. benthamiana RNAi 下调系中表达。三种抗体变体(H10-Mut)(H10-SEKDEL)(H10(XylT/FucT))被瞬时表达、纯化并对其糖基化谱、表达/纯化产率和抗体降解模式进行了表征。H10(XylT/FucT)的糖基化分析表明不存在植物复杂型糖,而 H10-SEKDEL 虽然主要保留在内质网中,但存在β1,2-木糖和α1,3-岩藻糖残基,表明部分逃脱了内质网回收系统。内质网保留并没有提高抗体的积累和纯化产量。所有 H10 抗体的糖型都比原始抗体更容易降解,主要形成 Fab 片段。对于无糖基化的 H10-Mut,重链的切割率超过 95%,这证实了糖基部分对蛋白质稳定性的关键作用。在 H10 抗体铰链区鉴定可能的“脆弱”位点可能对开发减少抗体降解和提高植物中完整 IgG 产量的新策略具有普遍意义。

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