首页> 外文期刊>Microbial Cell Factories >The YoaW signal peptide directs efficient secretion of different heterologous proteins fused to a StrepII-SUMO tag in Bacillus subtilis
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The YoaW signal peptide directs efficient secretion of different heterologous proteins fused to a StrepII-SUMO tag in Bacillus subtilis

机译:YoaW信号肽指导枯草芽孢杆菌中与StrepII-SUMO标签融合的不同异源蛋白的有效分泌

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Heterologous gene expression is well established for various prokaryotic model systems. However, low yield, incorrect folding and instability still impede the production of soluble, bioactive proteins. To improve protein production with the Gram-positive host Bacillus subtilis, a secretory expression system was designed that enhances translocation, folding and stability of heterologous proteins, and simplifies purification. Based on the theta-replication plasmid pHT01, a B. subtilis secretory expression vector was constructed that encodes a fusion protein consisting of a signal peptide and a StrepII-tag linked to a SUMO-tag serving as a folding catalyst. The gene of a protein of interest can be translationally fused to the SUMO cassette and an additional 6xHis-tag encoding region. In order to maximize secretory expression of the construct by fitting the signal peptide to the StrepII-SUMO part of the fusion protein, a B. subtilis signal-peptide library was screened with the Escherichia coli alkaline phosphatase PhoA as a reporter. The YoaW signal peptide-encoding region (SPyoaW) was identified with highest secretory expression capacity in context with the StrepII-SUMO-tag fusion in a B. subtilis eightfold extracellular protease deletion strain. PhoA activity and fusion protein production was elevated by a factor of approximately five when compared to an α-amylase (AmyQ) signal peptide construct. Replacement of PhoA with a single-chain variable fragment antibody specific for GFP or the B. amyloliquefaciens RNase barnase, respectively, resulted in a similar enhancement of secretory expression, demonstrating universality of the YoaW signal peptide-StrepII-SUMO encoding cassette for secretory expression in B. subtilis. Optimisation of codon usage and culture conditions further increased GFP-specific scFv fusion-protein production, and a simple affinity purification strategy from culture supernatant with removal of the StrepII-SUMO-tag by SenP-processing yielded 4?mg of pure, soluble and active GFP-specific scFv from 1?l of culture under standard laboratory conditions. The new expression system employing a YoaW signal peptide-StrepII-SUMO fusion will simplify secretory protein production and purification with B. subtilis. It can obviate the need for time consuming individual signal-peptide fitting to maximize yield for many different heterologous proteins of interest.
机译:对于各种原核模型系统,异源基因表达已被很好地建立。但是,低产量,不正确的折叠和不稳定性仍然阻碍可溶性生物活性蛋白的产生。为了提高革兰氏阳性宿主枯草芽孢杆菌的蛋白质产量,设计了一种分泌表达系统,该系统可增强异源蛋白质的易位,折叠和稳定性,并简化纯化过程。基于θ复制质粒pHT01,构建了枯草芽孢杆菌分泌表达载体,该载体编码由信号肽和与作为折叠催化剂的SUMO标签相连的StrepII标签组成的融合蛋白。感兴趣的蛋白质的基因可以翻译融合到SUMO盒和其他6xHis-tag编码区。为了通过使信号肽适合融合蛋白的StrepII-SUMO部分来最大化构建体的分泌表达,用大肠杆菌碱性磷酸酶PhoA作为报告基因筛选了枯草芽孢杆菌信号肽文库。在枯草芽孢杆菌八倍细胞外蛋白酶缺失菌株中,与StrepII-SUMO-tag融合蛋白相结合,鉴定出YoaW信号肽编码区(SPyoaW)具有最高的分泌表达能力。与α-淀粉酶(AmyQ)信号肽构建体相比,PhoA活性和融合蛋白产量提高了约五倍。用对GFP或解淀粉芽孢杆菌RNase barnase特异的单链可变片段抗体分别替换PhoA,导致分泌表达得到类似的增强,证明YoaW信号肽-StrepII-SUMO编码盒在分泌表达中具有普遍性。枯草芽孢杆菌。密码子使用和培养条件的优化进一步增加了GFP特异性scFv融合蛋白的产生,通过从培养上清液中进行简单的亲和纯化策略,并通过SenP加工去除了StrepII-SUMO-tag,可以得到4mg的纯净,可溶性和活性在标准实验室条件下,从1微升培养物中得到的GFP特异性scFv。采用YoaW信号肽-StrepII-SUMO融合蛋白的新表达系统将简化枯草芽孢杆菌的分泌蛋白生产和纯化。它可以消除耗时的单个信号肽拟合以最大化许多不同目的异源蛋白质产量的需求。

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