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Enhanced-Transient Expression of Hepatitis C Virus Core Protein in Nicotiana tabacum , a Protein With Potential Clinical Applications

机译:烟草中的丙型肝炎病毒核心蛋白的增强瞬时表达,这种蛋白具有潜在的临床应用

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Background: Hepatitis C virus (HCV) is major cause of liver cirrhosis in humans. HCV capsid (core) protein (HCVcp) is a highly demanded antigen for various diagnostic, immunization and pathogenesis studies. Plants are considered as an expression system for producing safe and inexpensive biopharmaceutical proteins. Although invention of transgenic (stable) tobacco plants expressing HCVcp with proper antigenic properties was recently reported, no data for “transient-expression” that is currently the method of choice for rapid, simple and lower-priced protein expression in plants is available for HCVcp. Objectives: The purpose of this study was to design a highly codon-optimized HCVcp gene for construction of an efficient transient-plant expression system for production of HCVcp with proper antigenic properties in a regional tobacco plant (Iranian Jafarabadi-cultivar) by evaluation of different classes of vectors and suppression of gene-silencing in tobacco. Materials and Methods: A codon-optimized gene encoding the Kozak sequence, 6xHis-tag, HCVcp (1-122) and KDEL peptide in tandem (from N- to C-terminal) was designed and inserted into potato virus-X (PVX) and classic pBI121 binary vectors in separate cloning reactions. The resulted recombinant plasmids were transferred into Agrobacterium tumefaciens and vacuum infiltrated into tobacco leaves. The effect of gene silencing suppressor P19 protein derived from tomato bushy stunt virus on the expression yield of HCVcp by each construct was also evaluated by co-infiltration in separate groups. The expressed HCVcp was evaluated by dot and western blotting and ELISA assays. Results: The codon-optimized gene had an increased adaptation index value (from 0.65 to 0.85) and reduced GC content (from 62.62 to 51.05) in tobacco and removed the possible deleterious effect of “GGTAAG” splice site in native HCVcp. Blotting assays via specific antibodies confirmed the expression of the 15 kDa HCVcp. The expression level of HCVcp was enhanced by 4-5 times in P19 co-agroinfiltrated plants with better outcomes for PVX, compared to pBI121 vector (0.022% versus 0.019% of the total soluble protein). The plant-derived HCVcp (pHCVcp) could properly identify the HCVcp antibody in HCV-infected human sera compared to Escherichia coli -derived HCVcp (eHCVcp), indicating its potential for diagnostic/immunization applications. Conclusions: By employment of gene optimization strategies, use of viral-based vectors and suppression of plant-derived gene silencing effect, efficient transient expression of HCVcp in tobacco with proper antigenic properties could be possible.
机译:背景:丙型肝炎病毒(HCV)是人类肝硬化的主要原因。 HCV衣壳(核心)蛋白(HCVcp)是各种诊断,免疫和发病机理研究中高度需要的抗原。植物被认为是用于生产安全且廉价的生物药物蛋白的表达系统。尽管最近报道了表达具有适当抗原性的HCVcp的转基因(稳定)烟草植物的发明,但目前尚无可用于HCVcp的“瞬时表达”数据(目前在植物中快速,简单和低价蛋白质表达的选择方法)的数据。 。目的:本研究的目的是设计一个高度密码子优化的HCVcp基因,以通过评估不同的烟草品种,构建高效的瞬时植物表达系统,以生产具有适当抗原特性的HCVcp,从而在区域烟草植物(伊朗Jafarabadi-品种)中生产类载体和烟草中基因沉默的抑制。材料和方法:设计了密码子优化的基因,编码串联(从N端到C端)的Kozak序列,6xHis-tag,HCVcp(1-122)和KDEL肽,并将其插入马铃薯X病毒(PVX)中和经典pBI121二元载体在单独的克隆反应中。将得到的重组质粒转移到根癌农杆菌中并真空渗入烟草叶中。还通过在不同组中的共浸润评估了来自番茄丛状特技病毒的基因沉默抑制剂P19蛋白对每种构建体HCVcp表达产量的影响。通过斑点和蛋白质印迹以及ELISA测定法评估表达的HCVcp。结果:密码子优化的基因在烟草中的适应指数值增加(从0.65到0.85),GC含量减少(从62.62到51.05),并消除了天然HCVcp中“ GGTAAG”剪接位点的可能有害作用。通过特异性抗体的印迹分析证实了15 kDa HCVcp的表达。与pBI121载体相比,在P19共农渗植物中HCVcp的表达水平提高了4-5倍,对PVX的效果更好(0.022%对总可溶性蛋白的0.019%)。与大肠杆菌来源的HCVcp(eHCVcp)相比,植物来源的HCVcp(pHCVcp)可以正确识别HCV感染的人血清中的HCVcp抗体,表明其在诊断/免疫应用中的潜力。结论:通过采用基因优化策略,使用基于病毒的载体和抑制植物来源的基因沉默效应,HCVcp在具有适当抗原特性的烟草中可以高效瞬时表达。

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