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首页> 外文期刊>Protein Expression and Purification >Comparative expression of wild-type and highly soluble mutant His103Leu of hydroxynitrile lyase from Manihot esculenta in prokaryotic and eukaryotic expression systems
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Comparative expression of wild-type and highly soluble mutant His103Leu of hydroxynitrile lyase from Manihot esculenta in prokaryotic and eukaryotic expression systems

机译:曼尼霍特氏cul野生型和高可溶性突变型羟腈裂解酶His103Leu在原核和真核表达系统中的比较表达

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Low protein solubility and inclusion body formation represent big challenges in production of recombinant proteins in Escherichia coli. We have recently reported functional expression of hydroxynitrile lyase from Manihot esculenta, MeHNL, in E. coli with high in vivo solubility and activity using directed evolution. As a part of attempts to clarify the mechanism of this phenomenon, we have described the possibility of expression of the highly active and soluble mutant MeHNL-His103Leu as well as wild-type enzyme in several expression systems. Methylotrophic yeast Pichia pastoris, protozoan host Leishmania tarentolae and two cell-free translations, including an E. coli lysate (WakoPURE system) and wheat germ translation system were used to compare expression profiles of the genes. Two distinguishable protein expression patterns were observed in prokaryotic and eukaryotic-based systems. The wild-type and mutant enzyme showed high activity for both genes (up to 10 U/ml) in eukaryotic hosts P. pastoris and L. tarentolae, while those of E. coli exhibited about 1 and 15 U/ml, respectively. The different activity level in prokaryotic systems but the same level among the eukaryotic hosts indicate the phenomenon is specific to the E. coli system. Both the wild-type and mutant enzymes were functionally expressed in eukaryotic systems, probably using the folding assistants such as chaperones. Properties of expression systems used in this study were precisely compared, too.
机译:低蛋白溶解度和包涵体形成代表了在大肠杆菌中生产重组蛋白的巨大挑战。最近,我们报道了使用定向进化法从大肠杆菌中的Manihot esculenta中的羟腈裂解酶MeHNL进行功能性表达,具有很高的体内溶解度和活性。作为阐明这种现象机理的尝试的一部分,我们描述了在几种表达系统中表达高活性和可溶性突变型MeHNL-His103Leu以及野生型酶的可能性。甲基营养酵母巴斯德毕赤酵母,原生动物宿主利什曼原虫塔伦托雷和两个无细胞翻译,包括大肠杆菌裂解物(WakoPURE系统)和小麦胚芽翻译系统,用于比较基因的表达谱。在原核和基于真核的系统中观察到两种可区分的蛋白质表达模式。野生型和突变型酶在真核宿主巴斯德毕赤酵母和塔伦特氏菌中均显示出对这两个基因的高活性(最高10 U / ml),而大肠杆菌则分别约为1和15 U / ml。在原核系统中不同的活性水平,但是在真核宿主中相同的水平表明该现象是特定于大肠杆菌系统的。野生型和突变型酶均在真核系统中功能性表达,可能使用了分子伴侣等折叠助剂。这项研究中使用的表达系统的性质也进行了精确比较。

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