Sijmons P C, Dekker B M, Schrammeijer B, Verwoerd T C, van den Elzen P J, Hoekema A
Mogen International NV, Leiden, The Netherlands.
Biotechnology (N Y). 1990 Mar;8(3):217-21. doi: 10.1038/nbt0390-217.
We have used a modified CaMV 35S promoter to direct the expression of chimaeric genes encoding human serum albumin (HSA) in transgenic potato and tobacco plants. To secrete the protein, either the human prepro-sequence or the signal sequence from the extracellular tobacco protein PR-S was used. We demonstrate secretion of HSA with both types of signal sequences in transgenic leaf tissue and in suspension cultures. HSA produced in transgenic potato plants was purified to chromatographic homogeneity. N-terminal amino acid sequence analysis revealed that the processing of the precursor protein was dependent on the type of signal sequence. Expression of the human preproHSA gene lead to partial processing of the precursor and secretion of proHSA. Fusion of HSA to the plant PR-S presequence resulted in cleavage of the presequence at its natural site and secretion of correctly processed HSA that is indistinguishable from the authentic human protein.
我们使用了一个经过修饰的花椰菜花叶病毒35S启动子,来指导编码人血清白蛋白(HSA)的嵌合基因在转基因马铃薯和烟草植株中的表达。为了分泌该蛋白,我们使用了人前原序列或来自烟草细胞外蛋白PR-S的信号序列。我们证明了在转基因叶片组织和悬浮培养物中,两种类型的信号序列都能实现HSA的分泌。转基因马铃薯植株中产生的HSA被纯化至色谱纯。N端氨基酸序列分析表明,前体蛋白的加工取决于信号序列的类型。人前原HSA基因的表达导致前体的部分加工和proHSA的分泌。HSA与植物PR-S前序列融合,导致前序列在其天然位点被切割,并分泌出加工正确的HSA,其与天然人蛋白无法区分。