Fernández-San Millán Alicia, Mingo-Castel Angel, Miller Michael, Daniell Henry
Department of Molecular Biology and Microbiology, University of Central Florida, Biomolecular Science Building #20, Room 336, Orlando, FL 32816-2360, USA.
Plant Biotechnol J. 2003 Mar;1(2):71-9. doi: 10.1046/j.1467-7652.2003.00008.x.
Human Serum Albumin (HSA) accounts for 60% of the total protein in blood serum and it is the most widely used intravenous protein in a number of human therapies. HSA, however, is currently extracted only from blood because of a lack of commercially feasible recombinant expression systems. HSA is highly susceptible to proteolytic degradation in recombinant systems and is expensive to purify. Expression of HSA in transgenic chloroplasts using Shine-Dalgarno sequence (SD), which usually facilitates hyper-expression of transgenes, resulted only in 0.02% HSA in total protein (tp). Modification of HSA regulatory sequences using chloroplast untranslated regions (UTRs) resulted in hyper-expression of HSA (up to 11.1% tp), compensating for excessive proteolytic degradation. This is the highest expression of a pharmaceutical protein in transgenic plants and 500-fold greater than previous reports on HSA expression in transgenic leaves. Electron micrographs of immunogold labelled transgenic chloroplasts revealed HSA inclusion bodies, which provided a simple method for purification from other cellular proteins. HSA inclusion bodies could be readily solubilized to obtain a monomeric form using appropriate reagents. The regulatory elements used in this study should serve as a model system for enhancing expression of foreign proteins that are highly susceptible to proteolytic degradation and provide advantages in purification, when inclusion bodies are formed.
人血清白蛋白(HSA)占血清总蛋白的60%,是多种人类治疗中使用最广泛的静脉注射蛋白。然而,由于缺乏商业上可行的重组表达系统,目前HSA仅从血液中提取。HSA在重组系统中极易受到蛋白水解降解,且纯化成本高昂。使用通常促进转基因超表达的Shine-Dalgarno序列(SD)在转基因叶绿体中表达HSA,其在总蛋白(tp)中仅占0.02%。利用叶绿体非翻译区(UTR)对HSA调控序列进行修饰,导致HSA超表达(高达11.1%tp),弥补了过度的蛋白水解降解。这是转基因植物中药物蛋白的最高表达水平,比之前关于转基因叶片中HSA表达的报道高500倍。免疫金标记转基因叶绿体的电子显微镜图像显示了HSA包涵体,这为从其他细胞蛋白中纯化提供了一种简单方法。使用适当的试剂,HSA包涵体可以很容易地溶解以获得单体形式。本研究中使用的调控元件应作为一个模型系统,用于增强极易受到蛋白水解降解的外源蛋白的表达,并在形成包涵体时在纯化方面提供优势。