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用于提高来自不同原核生物域的两种重组几丁质分解酶产量的优化表达条件。

Optimized expression conditions for enhancing production of two recombinant chitinolytic enzymes from different prokaryote domains.

作者信息

García-Fraga Belén, da Silva Abigail F, López-Seijas Jacobo, Sieiro Carmen

出版信息

Bioprocess Biosyst Eng. 2015 Dec;38(12):2477-86. doi: 10.1007/s00449-015-1485-5.

Abstract

Enhancing functional gene expression is key to high-level production of active chitinases. For this purpose, the effects of culture cell density, inducer concentration, post-induction time and induction temperatures on the functional expression of two different chitinases (HsChiA1p, a family 18 archaeal chitinase and PtChi19p, a family 19 bacterial chitinase) were comparatively investigated. Results showed that the effect of each parameter on the activity of both chitinases was specific to each enzyme. In addition, different Escherichia coli host strains compatible with the expression in pET systems were assayed for active protein overexpression. When using BL21 Star (DE3), a significant increase of 60% in expression was observed for the active archaeal chitinase HsChiA1p as compared to that found when using BL21 (DE3), indicating that the rne131 gene mutation efficiently stabilizes the mRNA for HsChiA1p. Using the Codon Adaptation Index value, rare codon analysis of the archaeal HschiA1 and bacterial Ptchi19 genes revealed that both DNA sequences were not optimal for maximal expression in E. coli. Different E. coli host strains possess extra copies of some of the tRNA genes for rare codons. For the Rosetta 2 (DE3) and the BL21 RP (DE3) strains, a significant increase of 40% was reached for the activity of HsChiA1p and PtChi19p. Finally, as part of the protein still remained insoluble, the best conditions for recovering biologically active protein from inclusion bodies were established for each enzyme.

摘要

增强功能基因表达是高效生产活性几丁质酶的关键。为此,比较研究了培养细胞密度、诱导剂浓度、诱导后时间和诱导温度对两种不同几丁质酶(HsChiA1p,一种18家族古细菌几丁质酶和PtChi19p,一种19家族细菌几丁质酶)功能表达的影响。结果表明,每个参数对两种几丁质酶活性的影响因酶而异。此外,还检测了与pET系统中表达兼容的不同大肠杆菌宿主菌株的活性蛋白过表达情况。当使用BL21 Star(DE3)时,与使用BL21(DE3)相比,活性古细菌几丁质酶HsChiA1p的表达显著增加了60%,这表明rne131基因突变有效地稳定了HsChiA1p的mRNA。使用密码子适应指数值,对古细菌HschiA1和细菌Ptchi19基因进行稀有密码子分析表明,这两个DNA序列在大肠杆菌中实现最大表达并非最佳。不同的大肠杆菌宿主菌株拥有一些稀有密码子的tRNA基因的额外拷贝。对于Rosetta 2(DE3)和BL21 RP(DE3)菌株,HsChiA1p和PtChi19p的活性显著提高了40%。最后,由于部分蛋白质仍不溶,针对每种酶确定了从包涵体中回收生物活性蛋白的最佳条件。

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