Jonet Mohd Anuar, Mahadi Nor Muhammad, Murad Abdul Munir Abdul, Rabu Amir, Bakar Farah Diba Abu, Rahim Raha Abdul, Low Kheng Oon, Illias Rosli Md
Department of Bioprocess Engineering, Universiti Teknologi Malaysia, Skudai, Malaysia.
J Mol Microbiol Biotechnol. 2012;22(1):48-58. doi: 10.1159/000336524. Epub 2012 Mar 23.
A heterologous signal peptide (SP) from Bacillus sp. G1 was optimized for secretion of recombinant cyclodextrin glucanotransferase (CGTase) to the periplasmic and, eventually, extracellular space of Escherichia coli. Eight mutant SPs were constructed using site-directed mutagenesis to improve the secretion of recombinant CGTase. M5 is a mutated SP in which replacement of an isoleucine residue in the h-region to glycine created a helix-breaking or G-turn motif with decreased hydrophobicity. The mutant SP resulted in 110 and 94% increases in periplasmic and extracellular recombinant CGTase, respectively, compared to the wild-type SP at a similar level of cell lysis. The formation of intracellular inclusion bodies was also reduced, as determined by sodium dodecyl sulfate-polyacrylamyde gel electrophoresis, when this mutated SP was used. The addition of as low as 0.08% glycine at the beginning of cell growth improved cell viability of the E. coli host. Secretory production of other proteins, such as mannosidase, also showed similar improvement, as demonstrated by CGTase production, suggesting that the combination of an optimized SP and a suitable chemical additive leads to significant improvements of extracellular recombinant protein production and cell viability. These findings will be valuable for the extracellular production of recombinant proteins in E. coli.
对来自芽孢杆菌属G1的异源信号肽(SP)进行了优化,以实现重组环糊精葡糖基转移酶(CGTase)在大肠杆菌周质以及最终细胞外空间的分泌。利用定点诱变构建了8种突变信号肽,以提高重组CGTase的分泌。M5是一种突变信号肽,其中h区域的异亮氨酸残基被甘氨酸取代,形成了一个疏水性降低的螺旋破坏或G-转角基序。与野生型信号肽相比,在细胞裂解水平相似的情况下,该突变信号肽使周质和细胞外重组CGTase分别增加了110%和94%。使用这种突变信号肽时,通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳测定,细胞内包涵体的形成也减少了。在细胞生长开始时添加低至0.08%的甘氨酸可提高大肠杆菌宿主的细胞活力。如CGTase生产所示,其他蛋白质(如甘露糖苷酶)的分泌生产也显示出类似的改善,这表明优化的信号肽和合适的化学添加剂的组合可显著提高细胞外重组蛋白的产量和细胞活力。这些发现对于在大肠杆菌中细胞外生产重组蛋白具有重要价值。