首页> 外文期刊>BMC Biotechnology >Bipartite and tripartite Cucumber mosaic virus-based vectors for producing the Acidothermus cellulolyticus endo-1,4-β-glucanase and other proteins in non-transgenic plants
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Bipartite and tripartite Cucumber mosaic virus-based vectors for producing the Acidothermus cellulolyticus endo-1,4-β-glucanase and other proteins in non-transgenic plants

机译:基于两方和三方黄瓜花叶病毒的载体,可在非转基因植物中产生解酸嗜酸乳杆菌内切1,4-β-葡聚糖酶和其他蛋白质

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Background Using plant viruses to produce desirable proteins in plants allows for using non-transgenic plant hosts and if necessary, the ability to make rapid changes in the virus construct for increased or modified protein product yields. The objective of this work was the development of advanced CMV-based protein production systems to produce Acidothermus cellulolyticus endo-1, 4-β-glucanase (E1) in non-transgenic plants. Results We used two new Cucumber mosaic virus (CMV)-based vector systems for producing the green fluorescent protein (GFP) and more importantly, the Acidothermus cellulolyticus endo-1, 4-β-glucanase (E1) in non-transgenic Nicotiana benthamiana plants. These are the inducible CMVin (CMV-based inducible) and the autonomously replicating CMVar (CMV-based advanced replicating) systems. We modified a binary plasmid containing the complete CMV RNA 3 cDNA to facilitate insertion of desired sequences, and to give modifications of the subgenomic mRNA 4 leader sequence yielding several variants. Quantitative RT-PCR and immunoblot analysis showed good levels of CMV RNA and coat protein accumulation for some variants of both CMVin and CMVar . When genes for E1 or GFP were inserted in place of the CMV coat protein, both were produced in plants as shown by fluorescence (GFP) and immunoblot analysis. Enzymatic activity assays showed that active E1 was produced in plants with yields up to?~?11?μg/g fresh weight (FW) for specific variant constructs. We also compared in vitro CMV genomic RNA reassortants, and CMV RNA 3 mutants which lacked the C’ terminal 33 amino acids of the 3A movement protein in attempts to further increase E1 yield. Taken together specific variant constructs yielded up to ~21?μg/g FW of E1 in non-transgenic plants. Conclusions Intact, active E1 was rapidly produced in non-transgenic plants by using agroinfiltration with the CMV-based systems. This reduces the time and cost compared to that required to generate transgenic plants and still gives the comparable yields of active E1. Our modifications described here, including manipulating cloning sites for foreign gene introduction, enhance the ease of use. Also, N. benthamiana, which is particularly suitable for agroinfiltration, is a very good plant for transient protein production.
机译:背景技术使用植物病毒在植物中产生所需的蛋白质允许使用非转基因植物宿主,并且如果需要,可以在病毒构建物中进行快速改变以增加或修饰蛋白质产物产量的能力。这项工作的目的是开发先进的基于CMV的蛋白质生产系统,以在非转基因植物中生产嗜酸解热纤溶酶的end-1、4-β-葡聚糖酶(E1)。结果我们使用了两个基于黄瓜花叶病毒(CMV)的新载体系统来产生绿色荧光蛋白(GFP),更重要的是,在非转基因烟草本氏烟草植物中产生了嗜酸解热丝菌endo-1、4-β-葡聚糖酶(E1)。 。这些是诱导型CMVin(基于CMV的诱导型)和自主复制的CMVar(基于CMV的高级复制)系统。我们修改了包含完整CMV RNA 3 cDNA的二进制质粒,以方便所需序列的插入,并给出亚基因组mRNA 4前导序列的修饰,产生数个变体。定量RT-PCR和免疫印迹分析显示CMVin和CMVar的一些变体的CMV RNA水平和外壳蛋白积累良好。当插入E1或GFP的基因代替CMV外壳蛋白时,两者均在植物中产生,如荧光(GFP)和免疫印迹分析所示。酶活性测定表明,活性E1是在植物中产生的,对于特定的变体构建体,其产量高达?〜?11?μg/ g鲜重(FW)。我们还比较了体外CMV基因组RNA重配子和缺乏3A运动蛋白C'末端33个氨基酸的CMV RNA 3突变体,以尝试进一步提高E1产量。在非转基因植物中,特定变体构建体合计可产生高达〜21?μg/ g FW的E1。结论通过基于CMV的系统进行农杆菌渗入,可在非转基因植物中快速产生完整的活性E1。与产生转基因植物所需的时间和成本相比,它减少了时间和成本,并且仍然具有可比的活性E1产量。我们在此描述的修饰,包括操纵外源基因导入的克隆位点,提高了易用性。同样,特别适合于农杆菌渗入的本氏烟草是用于瞬时蛋白质生产的非常好的植物。

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