首页> 外文期刊>Plant Biotechnology Journal >Co-expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor-1 into a biologically active protein
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Co-expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor-1 into a biologically active protein

机译:淡莲花果南岛蛋白酶Furin的共表达导致潜伏的转化生长因子-1的高效加工到生物活性蛋白中

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Transforming growth factor beta (TGF-) is a signalling molecule that plays a key role in developmental and immunological processes in mammals. Three TGF- isoforms exist in humans, and each isoform has unique therapeutic potential. Plants offer a platform for the production of recombinant proteins, which is cheap and easy to scale up and has a low risk of contamination with human pathogens. TGF-3 has been produced in plants before using a chloroplast expression system. However, this strategy requires chemical refolding to obtain a biologically active protein. In this study, we investigated the possibility to transiently express active human TGF-1 in Nicotiana benthamiana plants. We successfully expressed mature TGF-1 in the absence of the latency-associated peptide (LAP) using different strategies, but the obtained proteins were inactive. Upon expression of LAP-TGF-1, we were able to show that processing of the latent complex by a furin-like protease does not occur in planta. The use of a chitinase signal peptide enhanced the expression and secretion of LAP-TGF-1, and co-expression of human furin enabled the proteolytic processing of latent TGF-1. Engineering the plant post-translational machinery by co-expressing human furin also enhanced the accumulation of biologically active TGF-1. This engineering step is quite remarkable, as furin requires multiple processing steps and correct localization within the secretory pathway to become active. Our data demonstrate that plants can be a suitable platform for the production of complex proteins that rely on specific proteolytic processing.
机译:转化生长因子β(TGF-)是一种信号分子,其在哺乳动物中发挥着发育和免疫过程中的关键作用。人类存在三种TGF-同种型,每个同种型具有独特的治疗潜力。植物为生产重组蛋白的生产平台,这是便宜且易于扩大的,并且具有低污染的人病原体的风险。在使用叶绿体表达系统之前在植物中生产的TGF-3。然而,该策略需要化学重折叠以获得生物活性蛋白质。在这项研究中,我们调查了在尼古利亚纳·宾夕法尼亚州植物中瞬时表达活性人体TGF-1的可能性。我们在使用不同策略的情况下,在没有潜伏期相关的肽(LAP)的情况下,我们成功地表达了成熟的TGF-1,但所得蛋白质是无活性的。在表达LAP-TGF-1后,我们能够表明在Planta中不会发生呋喃蛋白样蛋白酶的潜在复合物的处理。用花氨酰酶信号肽的使用增强了LAP-TGF-1的表达和分泌,并且人Furin的共同表达使潜伏的TGF-1的蛋白水解加工能够。通过共同表达人类紫蛋白的工厂工厂翻译后机械也增强了生物活性TGF-1的积累。该工程步骤非常出色,因为Furin需要多种处理步骤并在分泌路线内进行校正定位以变得有效。我们的数据表明,植物可以是生产依赖于特定蛋白水解加工的复杂蛋白质的合适平台。

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