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功能性重组人凝血因子 IX 在转基因大豆种子中的积累。

Accumulation of functional recombinant human coagulation factor IX in transgenic soybean seeds.

机构信息

Embrapa Genetic Resources and Biotechnology, Parque Estação Biológica (PqEB), Av. W5 Norte, Brasília, DF 70770-917, Brazil.

出版信息

Transgenic Res. 2011 Aug;20(4):841-55. doi: 10.1007/s11248-010-9461-y. Epub 2010 Nov 11.

Abstract

The seed-based production of recombinant proteins is an efficient strategy to achieve the accumulation, correct folding, and increased stability of these recombinant proteins. Among potential plant molecular farming systems, soybean [Glycine max (L.) Merrill] is a viable option for the production of recombinant proteins due to its high protein content, known regulatory sequences, efficient gene transfer protocols, and a scalable production system under greenhouse conditions. We report here the expression and stable accumulation of human coagulation factor IX (hFIX) in transgenic soybean seeds. A biolistic process was utilised to co-introduce a plasmid carrying the hFIX gene under the transcriptional control of the α' subunit of a β-conglycinin seed-specific promoter and an α-Coixin signal peptide in soybean embryonic axes from mature seeds. The 56-kDa hFIX protein was expressed in the transgenic seeds at levels of up to 0.23% (0.8 g kg(-1) seed) of the total soluble seed protein as determined by an enzyme-linked immunosorbent assay (ELISA) and western blot. Ultrastructural immunocytochemistry assays indicated that the recombinant hFIX in seed cotyledonary cells was efficiently directed to protein storage vacuoles. Mass spectrometry characterisation confirmed the presence of the hFIX recombinant protein sequence. Protein extracts from transgenic seeds showed a blood-clotting activity of up to 1.4% of normal plasma. Our results demonstrate the correct processing and stable accumulation of functional hFIX in soybean seeds stored for 6 years under room temperature conditions (22 ± 2°C).

摘要

基于种子的重组蛋白生产是实现这些重组蛋白积累、正确折叠和增加稳定性的有效策略。在潜在的植物分子农业系统中,大豆[Glycine max (L.) Merrill]是生产重组蛋白的可行选择,因为它具有高蛋白含量、已知的调控序列、高效的基因转移方案,以及在温室条件下可扩展的生产系统。我们在这里报告了人凝血因子 IX (hFIX)在转基因大豆种子中的表达和稳定积累。利用生物弹道技术,将携带 hFIX 基因的质粒在α'亚基的转录控制下共同引入成熟种子的大豆胚胎轴中,该质粒由β-伴大豆球蛋白种子特异性启动子和α-伴大豆球蛋白信号肽驱动。通过酶联免疫吸附测定 (ELISA) 和 Western blot 测定,hFIX 蛋白在转基因种子中的表达水平高达总可溶性种子蛋白的 0.23%(0.8 g kg(-1)种子)。超微结构免疫细胞化学分析表明,重组 hFIX 在种子子叶细胞中被有效地定向到蛋白质储存液泡中。质谱分析证实了存在 hFIX 重组蛋白序列。从转基因种子提取的蛋白质提取物显示出高达正常血浆的 1.4%的凝血活性。我们的结果表明,在室温条件(22 ± 2°C)下储存 6 年的大豆种子中,功能性 hFIX 得到了正确的加工和稳定的积累。

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