首页> 外文期刊>Plant Biotechnology Journal >Monomeric IgA can be produced in planta as efficient as IgG, yet receives different N ?¢????glycans
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Monomeric IgA can be produced in planta as efficient as IgG, yet receives different N ?¢????glycans

机译:单体IgA可以在植物中产生与IgG一样有效的效果,但可以接受不同的Nα-β-聚糖

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The unique features of IgA, such as the ability to recruit neutrophils and suppress the inflammatory responses mediated by IgG and IgE, make it a promising antibody isotype for several therapeutic applications. However, in contrast to IgG, reports on plant production of IgA are scarce. We produced IgA1???o and IgG1???o versions of three therapeutic antibodies directed against pro?¢????inflammatory cytokines in Nicotiana benthamiana : Infliximab and Adalimumab, directed against TNF?¢???????±, and Ustekinumab, directed against the interleukin?¢????12p40 subunit. We evaluated antibody yield, quality and N ?¢????glycosylation. All six antibodies had comparable levels of expression between 3.5 and 9% of total soluble protein content and were shown to have neutralizing activity in a cell?¢????based assay. However, IgA1???o?¢????based Adalimumab and Ustekinumab were poorly secreted compared to their IgG counterparts. Infliximab was poorly secreted regardless of isotype backbone. This corresponded with the observation that both IgA1???o?¢???? and IgG1???o?¢????based Infliximab were enriched in oligomannose?¢????type N ?¢????glycan structures. For IgG1???o?¢????based Ustekinumab and Adalimumab, the major N ?¢????glycan type was the typical plant complex N ?¢????glycan, biantennary with terminal N ?¢????acetylglucosamine, ???21,2?¢????xylose and core ???±1,3?¢????fucose. In contrast, the major N ?¢????glycan on the IgA?¢????based antibodies was xylosylated, but lacked core ???±1,3?¢????fucose and one terminal N ?¢????acetylglucosamine. This type of N ?¢????glycan occurs usually in marginal percentages in plants and was never shown to be the main fraction of a plant?¢????produced recombinant protein. Our data demonstrate that the antibody isotype may have a profound influence on the type of N ?¢????glycan an antibody receives.
机译:IgA的独特功能,例如募集嗜中性粒细胞和抑制IgG和IgE介导的炎症反应的能力,使其成为具有前景的抗体同种型,可用于多种治疗应用。但是,与IgG相比,关于IgA植物产生的报道很少。我们生产了三种针对本生烟草中促炎性细胞因子的治疗性抗体的IgA1βo和IgG1βo版本:英夫利昔单抗和阿达木单抗,针对TNFα。 ,和Ustekinumab,针对白细胞介素12p40亚基。我们评估了抗体的产量,质量和Nα-β-糖基化。所有六种抗体的表达水平均在总可溶性蛋白含量的3.5%至9%之间,并且在基于细胞的测定中显示具有中和活性。然而,与它们的IgG对应物相比,基于IgA1?o ???????的Adalimumab和Ustekinumab的分泌较差。无论同种型骨架如何,英夫利昔单抗的分泌都很差。这与观察到两个IgA1 ??????????和基于IgG 1的基于of的英夫利昔单抗富集了低聚甘露糖N型糖结构。对于基于IgG1的基于Ustekinumab和Adalimumab的抗体,主要的Nα-β-聚糖类型是典型的植物复合物Nα-β-聚糖,双天线末端为Nα-β。乙酰氨基葡糖,21,2-二葡糖和核心±1,3-岩藻糖。相反,基于IgAβ的抗体上主要的Nβ葡聚糖被木糖基化,但是缺乏核心±1,3α-岩藻糖和一个末端Nα-葡聚糖。乙酰氨基葡萄糖。这种类型的Nα-β-聚糖通常以很少的百分比出现在植物中,并且从未显示出是植物产生的重组蛋白的主要部分。我们的数据表明,抗体同种型可能对抗体所接受的Nβ-β-聚糖的类型有深远的影响。

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