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Improvement in the stability and functionality of Nicotiana tabacum produced recombinant TRAIL through employment of endoplasmic reticulum expression and ascorbate buffer mediated extraction strategies

机译:通过利用内质网表达和抗坏血酸缓冲液介导的提取策略改善烟草产生的重组TRAIL的稳定性和功能

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摘要

Introduction: In order to employ Nicotiana tabacum cells as a profitable natural bioreactor for production of bio-functional "Soluble human TRAIL" (ShTRAIL), endoplasmic reticulum (ER) targeted expression and innovative extraction procedures were exploited. Methods: At first, the ShTRAIL encoding gene was sub-cloned into designed H2 helper vector to equip it with potent TMV omega leader sequences, ER sorting signal peptide, poly-histidine tag and ER retention signal peptide (KDEL). Then, the ER targeted ShTRAIL cassette was sequentially sub-cloned into "CaMV-35S" helper and "pGreen-0179" final expression vectors. Afterward, Agrobacterium mediated transformation method was adopted to express the ShTRAIL in the ER of N. tabacum . Next, the ShTRAIL protein was extracted through both phosphate and innovative ascorbate extraction buffers. Subsequently, oligomerization state of the ShTRAIL was evaluated through cross-linking assay and western blot analysis. Then, semi-quantitative western blot analysis was performed to estimate the ShTRAIL production. Finally, biological activity of the ShTRAIL was evaluated through MTT assay. Results: The phosphate buffer extracted ShTRAIL was produced in dimmer form, whereas the ShTRAIL extracted with ascorbate buffer generated trimer form. The ER targeted ShTRAIL strategy increased the ShTRAIL’s production level up to about 20 μg/g of fresh weight of N. tabacum . MTT assay indicated that ascorbate buffer extracted ShTRAIL could prohibit proliferation of A549 cell line. Conclusion: Endoplasmic reticulum expression and reductive ascorbate buffer extraction procedure can be employed to enhance the stability and overall production level of bio-functional recombinant ShTRAIL from transgenic N. tabacum cells.
机译:简介:为了将烟草细胞用作生产生物功能“可溶性人类TRAIL”(ShTRAIL)的有利的天然生物反应器,利用了内质网(ER)的靶向表达和创新的提取程序。方法:首先,将ShTRAIL编码基因亚克隆到设计的H2辅助载体中,使其具有有效的TMV欧米茄前导序列,ER分选信号肽,聚组氨酸标签和ER保留信号肽(KDEL)。然后,将ER靶向的ShTRAIL盒顺序地亚克隆到“ CaMV-35S”辅助细胞和“ pGreen-0179”最终表达载体中。之后,采用农杆菌介导的转化方法在烟草的内质网中表达ShTRAIL。接下来,通过磷酸盐和创新型抗坏血酸提取缓冲液提取ShTRAIL蛋白。随后,通过交联测定和蛋白质印迹分析评估ShTRAIL的低聚状态。然后,进行半定量蛋白质印迹分析以估计ShTRAIL的产生。最后,通过MTT分析评估ShTRAIL的生物学活性。结果:磷酸盐缓冲液提取的ShTRAIL以较暗的形式生成,而ShTRAIL用抗坏血酸缓冲液提取则生成三聚体。以ER为目标的ShTRAIL策略可将ShTRAIL的生产水平提高至每克烟叶鲜重约20μg/ g。 MTT分析表明抗坏血酸缓冲液提取的ShTRAIL可以抑制A549细胞的增殖。结论:内质网表达和还原性抗坏血酸缓冲液提取工艺可提高转基因烟草细胞生物功能重组ShTRAIL的稳定性和整体生产水平。

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