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Hydrophobin Fusions for High-Level Transient Protein Expression and Purification in Nicotiana benthamiana

机译:疏水蛋白融合在本氏烟草中的高水平瞬时蛋白表达和纯化

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摘要

Insufficient accumulation levels of recombinant proteins in plants and the lack of efficient purification methods for recovering these valuable proteins have hindered the development of plant biotechnology applications. Hydrophobins are small and surface-active proteins derived from filamentous fungi that can be easily purified by a surfactant-based aqueous two-phase system. In this study, the hydrophobin HFBI sequence from Trichoderma reesei was fused to green fluorescent protein (GFP) and transiently expressed in Nicotiana benthamiana plants by Agrobacterium tumefaciens infiltration. The HFBI fusion significantly enhanced the accumulation of GFP, with the concentration of the fusion protein reaching 51% of total soluble protein, while also delaying necrosis of the infiltrated leaves. Furthermore, the endoplasmic reticulum-targeted GFP-HFBI fusion induced the formation of large novel protein bodies. A simple and scalable surfactant-based aqueous two-phase system was optimized to recover the HFBI fusion proteins from leaf extracts. The single-step phase separation was able to selectively recover up to 91% of the GFP-HFBI up to concentrations of 10 mg mL−1. HFBI fusions increased the expression levels of plant-made recombinant proteins while also providing a simple means for their subsequent purification. This hydrophobin fusion technology, when combined with the speed and posttranslational modification capabilities of plants, enhances the value of transient plant-based expression systems.
机译:重组蛋白在植物中的积累水平不足,以及缺乏有效的纯化方法来回收这些有价值的蛋白,已经阻碍了植物生物技术应用的发展。疏水蛋白是细小且具有表面活性的蛋白质,其衍生自丝状真菌,可以通过基于表面活性剂的水性两相系统轻松纯化。在这项研究中,里氏木霉的疏水蛋白HFBI序列与绿色荧光蛋白(GFP)融合,并通过根癌农杆菌浸润在本氏烟草中瞬时表达。 HFBI融合显着增强了GFP的积累,融合蛋白的浓度达到总可溶性蛋白的51%,同时还延迟了浸润叶片的坏死。此外,内质网靶向的GFP-HFBI融合诱导了大型新型蛋白体的形成。优化了一个简单且可扩展的基于表面活性剂的水性两相系统,以从叶提取物中回收HFBI融合蛋白。单步相分离能够选择性地回收高达91 mg的GFP-HFBI,直至浓度为10 mg mL -1 。 HFBI融合增加了植物重组蛋白的表达水平,同时也为其后续纯化提供了一种简单的方法。这种疏水蛋白融合技术与植物的速度和翻译后修饰能力结合使用时,可以提高基于植物的瞬时表达系统的价值。

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