首页> 外文期刊>Plant Biotechnology Journal >A KDEL-tagged monoclonal antibody is efficiently retained in the endoplasmic reticulum in leaves, but is both partially secreted and sorted to protein storage vacuoles in seeds.
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A KDEL-tagged monoclonal antibody is efficiently retained in the endoplasmic reticulum in leaves, but is both partially secreted and sorted to protein storage vacuoles in seeds.

机译:kdel标记的单克隆抗体是有效地保留在叶中的内质网中,但既部分分泌并分类到种子中的蛋白质储液。

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Transgenic plants are attractive biological systems for the large-scale production of pharmaceutical proteins. In particular, seeds offer special advantages, such as ease of handling and long-term stable storage. Nevertheless, most of the studies of the expression of antibodies in plants have been performed in leaves. We report the expression of a secreted (sec-Ab) or KDEL-tagged (Ab-KDEL) mutant of the 14D9 monoclonal antibody in transgenic tobacco leaves and seeds. Although the KDEL sequence has little effect on the accumulation of the antibody in leaves, it leads to a higher antibody yield in seeds. sec-AbLeaf purified from leaf contains complex N-glycans, including Lewisa epitopes, as typically found in extracellular glycoproteins. In contrast, Ab-KDELLeaf bears only high-mannose-type oligosaccharides (mostly Man 7 and 8) consistent with an efficient endoplasmic reticulum (ER) retention/cis-Golgi retrieval of the antibody. sec-Ab and Ab-KDEL gamma chains purified from seeds are cleaved by proteases [proteinases] and contain complex N-glycans indicating maturation in the late Golgi compartments. Consistent with glycosylation of the protein, Ab-KDELSeed was partially secreted and sorted to protein storage vacuoles (PSVs) in seeds and not found in the ER. This dual targeting may be due to KDEL-mediated targeting to the PSV and to a partial saturation of the vacuolar sorting machinery. Taken together, our results reveal important differences in the ER retention and vacuolar sorting machinery between leaves and seeds. In addition, we demonstrate that a plant-made antibody with triantennary high-mannose-type N-glycans has similar Fab functionality to its counterpart with biantennary complex N-glycans, but the former antibody interacts with protein A in a stronger manner and is more immunogenic than the latter. Such differences could be related to a variable immunoglobulin G-Fc folding that would depend on the size of the N-glycan..
机译:转基因植物是用于大规模生产药物蛋白质的生物系统。特别是,种子提供特殊的优势,例如易于处理和长期稳定存储。然而,大多数对植物中抗体表达的研究已经在叶中进行。我们在转基因烟草叶和种子中报道了14d9单克隆抗体的分泌(秒AB)或kdel标记(Ab-Kdel)突变体的表达。虽然kdel序列对叶片中抗体的积累几乎没有影响,但它导致种子中的抗体产率更高。从叶片中纯化的秒形叶蛋白含有复杂的N-聚糖,包括Lewisa表位,通常在细胞外糖蛋白中发现。相比之下,AB-Kdellea刚刚只与抗体的有效内质网(ER)保留/ CIS-GOLGI检索一致的高甘露糖型低聚糖(大多数人7和8)。从种子中纯化的SEC-AB和AB-KDELγ链通过蛋白酶[蛋白酶]裂解,并含有络合物的N-聚糖,表明晚期GOLGI隔室中的成熟。与蛋白质的糖基化一致,在种子中部分分泌并分类到种子中的蛋白质储液(PSV)中,并未在ER中发现。这种双重靶向可能是由于KDEL介导的靶向PSV和真空分选机械的部分饱和。携带,我们的结果揭示了叶子和种子之间ER保留和真空分拣机械的重要差异。此外,我们证明一种具有三恩宁高甘露糖型N-聚糖的植物制作的抗体在其与双天民络合物N-聚糖的对应物中具有类似的Fab官能团,但前者抗体以更强的方式与蛋白质A相互作用,并且更多免疫原性比后者。这种差异可能与可变免疫球蛋白G-FC折叠有关,这将取决于N-Glycan的尺寸。

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