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Effect of the developmental stage and tissue position on the expression and glycosylation of recombinant glycoprotein GA733-FcK in transgenic plants

机译:发育阶段和组织位置对重组糖蛋白GA733-FcK在转基因植物中表达和糖基化的影响

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The influence of developmental stage and position (top, middle, and base) of leaves and stem tissues on the expression and glycosylation pattern of a recombinant therapeutic protein -GA733-FcK- was observed in transgenic seedlings during a 16-week growth period. RNA expression gradually increased with age in the middle and basal leaves and decreased in top leaves after 14 weeks. The protein expression level at all leaf positions increased until 14 weeks and slightly decreased at 16 weeks; it was lower in yellow leaves than in green leaves. In stem, protein expression gradually decreased from the top to the base. The glycosylation patterns of GA733-FcK were analyzed from 10 to 16 weeks. The plant-specific glycans increased in the top leaves at 14 weeks, but only slightly changed in the middle and basal leaves. The structure of glycans varied with tissue position. The glycosylation level in the top and middle leaves increased until 12 and 14 weeks, respectively, and decreased thereafter, whereas it decreased in basal leaves until 14 weeks and increased at 16 weeks. In stem, all three sections showed high-mannose type glycan structures. The area size of the glycans was significantly higher in the top stem than in both the middle and basal stems, and it was smaller in yellow leaves than in green leaves. The glycan profiles were similar between green and yellow leaves until 16 weeks. Thus, biomass-harvesting time should be optimized to obtain recombinant therapeutic proteins with ideal glycan structure profiles.
机译:在16周的生长期中,在转基因幼苗中观察到叶和茎组织的发育阶段和位置(顶部,中间和底部)对重组治疗性蛋白-GA733-FcK-的表达和糖基化模式的影响。 14周后,中叶和基叶的RNA表达随着年龄的增长而逐渐增加,而顶叶的RNA表达则下降。在所有叶片位置的蛋白质表达水平一直增加到14周,在16周时略有下降。黄叶比绿叶低。在茎中,蛋白质表达从顶部到底部逐渐降低。分析GA733-FcK的糖基化模式10至16周。在第14周时,叶片顶部的植物特异性聚糖含量增加,但在中叶和基生叶片中只有少量变化。聚糖的结构随组织位置而变化。顶叶和中叶的糖基化水平分别增加至12和14周,此后降低,而基底叶中的糖基化水平降低至14周,而16周时升高。在茎中,所有三个部分均显示高甘露糖型聚糖结构。上部茎中聚糖的面积大小显着高于中部和基部茎,黄叶中的聚糖小于绿叶中的。直到16周,绿色和黄色叶片之间的聚糖分布相似。因此,应优化生物质的采集时间以获得具有理想聚糖结构特征的重组治疗性蛋白质。

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