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首页> 外文期刊>Plant Biotechnology Journal >CRISPR/Cas9‐mediated knockout of six glycosyltransferase genes in Nicotiana benthamiana for the production of recombinant proteins lacking β‐1,2‐xylose and core α‐1,3‐fucose
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CRISPR/Cas9‐mediated knockout of six glycosyltransferase genes in Nicotiana benthamiana for the production of recombinant proteins lacking β‐1,2‐xylose and core α‐1,3‐fucose

机译:Crispr / Cas9介导的午间六糖基三糖基因的敲除,在尼古塔氏植物中缺乏缺乏β-1,2-木糖和核心α-1,3-岩藻糖的重组蛋白

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摘要

Plants offer fast, flexible and easily scalable alternative platforms for the production of pharmaceutical proteins, but differences between plant and mammalian N‐linked glycans, including the presence of β‐1,2‐xylose and core α‐1,3‐fucose residues in plants, can affect the activity, potency and immunogenicity of plant‐derived proteins. Nicotiana benthamiana is widely used for the transient expression of recombinant proteins so it is desirable to modify the endogenous N‐glycosylation machinery to allow the synthesis of complex N‐glycans lacking β‐1,2‐xylose and core α‐1,3‐fucose. Here, we used multiplex CRISPR/Cas9 genome editing to generate N.?benthamiana production lines deficient in plant‐specific α‐1,3‐fucosyltransferase and β‐1,2‐xylosyltransferase activity, reflecting the mutation of six different genes. We confirmed the functional gene knockouts by Sanger sequencing and mass spectrometry‐based N‐glycan analysis of endogenous proteins and the recombinant monoclonal antibody 2G12. Furthermore, we compared the CD64‐binding affinity of 2G12 glycovariants produced in wild‐type N.?benthamiana, the newly generated FX‐KO line, and Chinese hamster ovary (CHO) cells, confirming that the glyco‐engineered antibody performed as well as its CHO‐produced counterpart.
机译:植物为制药蛋白质提供快速,灵活且易于可扩展的替代平台,但植物和哺乳动物N-连接聚糖的差异,包括β-1,2-木糖和核心α-1,3-岩藻糖残基的存在植物可以影响植物衍生蛋白的活性,效力和免疫原性。 Nicotiana Benthamiana广泛用于重组蛋白的瞬时表达,因此希望改变内源性N-糖基化机械以允许合成缺少β-1,2-木糖和核心α-1,3-岩藻糖的复合N-聚糖的合成。在这里,我们使用多重CRISPR / CAS9基因组编辑来产生植物特异性α-1,3-岩藻糖基转移酶和β-1,2-木糖苷基转移酶活性的N.?benthamiana生产线,反映了六种不同基因的突变。我们通过Sanger测序和基于质谱的基于内源性蛋白质和重组单克隆抗体2G12的基于质谱的N-聚糖分析证实了功能基因敲除。此外,我们比较了在野生型N.Benthamiana,新生成的FX-KO线和中国仓鼠卵巢(CHO)细胞中产生的2g12糖糖醇的CD64结合亲和力,证实了所进行的Glyco工程抗体以及它的CHO制作的对应物。

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