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藻类中治疗性蛋白的生产,七种人类蛋白在莱茵衣藻叶绿体中的表达分析。

Production of therapeutic proteins in algae, analysis of expression of seven human proteins in the chloroplast of Chlamydomonas reinhardtii.

机构信息

Department of Cell Biology and the Skaggs Institute for Chemical Biology, La Jolla, CA, USA.

出版信息

Plant Biotechnol J. 2010 Aug;8(6):719-33. doi: 10.1111/j.1467-7652.2010.00503.x. Epub 2010 Mar 7.

DOI:10.1111/j.1467-7652.2010.00503.x
PMID:20230484
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2918638/
Abstract

Recombinant proteins are widely used today in many industries, including the biopharmaceutical industry, and can be expressed in bacteria, yeasts, mammalian and insect cell cultures, or in transgenic plants and animals. In addition, transgenic algae have also been shown to support recombinant protein expression, both from the nuclear and chloroplast genomes. However, to date, there are only a few reports on recombinant proteins expressed in the algal chloroplast. It is unclear whether this is because of few attempts or of limitations of the system that preclude expression of many proteins. Thus, we sought to assess the versatility of transgenic algae as a recombinant protein production platform. To do this, we tested whether the algal chloroplast could support the expression of a diverse set of current or potential human therapeutic proteins. Of the seven proteins chosen, >50% expressed at levels sufficient for commercial production. Three expressed at 2%-3% of total soluble protein, while a forth protein accumulated to similar levels when translationally fused to a well-expressed serum amyloid protein. All of the algal chloroplast-expressed proteins are soluble and showed biological activity comparable to that of the same proteins expressed using traditional production platforms. Thus, the success rate, expression levels, and bioactivity achieved demonstrate the utility of Chlamydomonas reinhardtii as a robust platform for human therapeutic protein production.

摘要

重组蛋白在许多行业中得到广泛应用,包括生物制药行业,可以在细菌、酵母、哺乳动物和昆虫细胞培养物中表达,或在转基因植物和动物中表达。此外,研究表明,转基因藻类也可以支持核基因组和叶绿体基因组的重组蛋白表达。然而,迄今为止,只有少数关于藻类叶绿体中表达的重组蛋白的报道。目前尚不清楚这是因为尝试较少,还是因为系统的局限性排除了许多蛋白质的表达。因此,我们试图评估转基因藻类作为重组蛋白生产平台的多功能性。为此,我们测试了藻类叶绿体是否能够支持一系列不同的当前或潜在的人类治疗蛋白的表达。在所选择的七种蛋白中,有超过 50%的蛋白表达水平足以进行商业生产。有三种蛋白的表达水平达到总可溶性蛋白的 2%-3%,而当与表达良好的血清淀粉样蛋白融合翻译时,第四种蛋白的积累水平相似。所有在藻类叶绿体中表达的蛋白都是可溶性的,其生物活性与使用传统生产平台表达的相同蛋白相当。因此,成功率、表达水平和生物活性都证明了莱茵衣藻作为生产人类治疗蛋白的强大平台的实用性。

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