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Engineering and production of functionally active human Furin in N. benthamiana plant: In vivo post-translational processing of target proteins by Furin in plants

机译:在本氏烟草植物中工程和生产具有功能活性的人弗林蛋白酶:弗林蛋白酶在植物体内对目标蛋白进行翻译后加工

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摘要

A plant expression platform with eukaryotic post-translational modification (PTM) machinery has many advantages compared to other protein expression systems. This promising technology is useful for the production of a variety of recombinant proteins including, therapeutic proteins, vaccine antigens, native additives, and industrial enzymes. However, plants lack some of the important PTMs, including furin processing, which limits this system for the production of certain mammalian complex proteins of therapeutic value. Furin is a ubiquitous proprotein convertase that is involved in the processing (activation) of a wide variety of precursor proteins, including blood coagulation factors, cell surface receptors, hormones and growth factors, viral envelope glycoproteins, etc. and plays a critical regulatory role in a wide variety of cellular events. In this study, we engineered the human furin gene for expression in plants and demonstrated the production of a functional active recombinant truncated human furin in N. benthamiana plant. We demonstrate that plant produced human furin is highly active both in vivo and in vitro and specifically cleaved the tested target proteins, Factor IX (FIX) and Protective Antigen (PA83). We also demonstrate that both, enzymatic deglycosylation and proteolytic processing of target proteins can be achieved in vivo by co-expression of deglycosylating and furin cleavage enzymes in a single cell to produce deglycosylated and furin processed target proteins. It is highly expected that this strategy will have many potential applications in pharmaceutical industry and can be used to produce safe and affordable therapeutic proteins, antibodies, and vaccines using a plant expression system.
机译:与其他蛋白质表达系统相比,具有真核翻译后修饰(PTM)机制的植物表达平台具有许多优势。这项有前途的技术可用于生产多种重组蛋白,包括治疗蛋白,疫苗抗原,天然添加剂和工业酶。但是,植物缺乏一些重要的PTM,包括弗林蛋白酶加工,这限制了该系统用于生产某些具有治疗价值的哺乳动物复合蛋白的能力。弗林蛋白酶是一种普遍存在的前蛋白转化酶,它参与多种前体蛋白的加工(激活),包括凝血因子,细胞表面受体,激素和生长因子,病毒包膜糖蛋白等,并在其中起着关键的调节作用。各种各样的细胞事件。在这项研究中,我们改造了人类弗林蛋白酶基因以在植物中表达,并证明了本氏烟草植物中功能活性的重组人截短的人类弗林蛋白酶的产生。我们证明了植物产生的人弗林蛋白酶在体内和体外均具有很高的活性,并特异性裂解了测试的靶蛋白,因子IX(FIX)和保护性抗原(PA83)。我们还证明,通过在单个细胞中共表达去糖基化和弗林蛋白酶切割酶以产生去糖基化和弗林蛋白酶加工的目标蛋白,可以在体内实现目标蛋白的酶促去糖基化和蛋白水解加工。高度期望该策略将在制药行业中具有许多潜在应用,并可用于使用植物表达系统生产安全且负担得起的治疗性蛋白质,抗体和疫苗。

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