Ma Yi, Wang Sijia, Hong Bin, Feng Lan, Wang Jufang
School of Biology and Biological Engineering, South China University of Technology, Guangzhou 510006, China.
Vaccines (Basel). 2024 Apr 28;12(5):472. doi: 10.3390/vaccines12050472.
Bacterial ghosts (BGs) are hollow bacterial cell envelopes with intact cellular structures, presenting as promising candidates for various biotechnological and biomedical applications. However, the yield and productivity of BGs have encountered limitations, hindering their large-scale preparation and multi-faceted applications of BGs. Further optimization of BGs is needed for the commercial application of BG technology. In this study, we screened out the most effective lysis protein ID52-E-W4A among 13 mutants based on phage ID52 lysis protein E and optimized the liquid culture medium for preparing Nissle 1917 (EcN). The results revealed a significantly higher lysis rate of ID52-E-W4A compared to that of ID52-E in the 2xYT medium. Furthermore, EcN BGs were cultivated in a fermenter, achieving an initial OD as high as 6.0 after optimization, indicating enhanced BG production. Moreover, the yield of ID52-E-W4A-induced BGs reached 67.0%, contrasting with only a 3.1% yield from φX174-E-induced BGs. The extended applicability of the lysis protein ID52-E-W4A was demonstrated through the preparation of pullorum ghosts and choleraesuis ghosts. Knocking out the molecular chaperone gene and revealed that ID52-mediated BGs could still undergo lysis. Conversely, overexpression of integral membrane enzyme gene resulted in the loss of lysis activity for ID52-E, suggesting that the lysis protein ID52-E may no longer rely on SlyD or DnaJ to function, with MraY potentially being the target of ID52-E. This study introduces a novel approach utilizing ID52-E-W4A for recombinant expression, accelerating the BG formation and thereby enhancing BG yield and productivity.
细菌鬼影(BGs)是具有完整细胞结构的中空细菌细胞壁,是各种生物技术和生物医学应用中很有前景的候选物。然而,BGs的产量和生产率受到限制,阻碍了它们的大规模制备和多方面应用。BG技术的商业应用需要对BGs进行进一步优化。在本研究中,我们基于噬菌体ID52裂解蛋白E从13个突变体中筛选出最有效的裂解蛋白ID52-E-W4A,并优化了用于制备Nissle 1917(EcN)的液体培养基。结果显示,在2xYT培养基中,ID52-E-W4A的裂解率显著高于ID52-E。此外,在发酵罐中培养EcN BGs,优化后初始OD高达6.0,表明BG产量提高。此外,ID52-E-W4A诱导的BGs产量达到67.0%,相比之下,φX174-E诱导的BGs产量仅为3.1%。通过制备鸡白痢杆菌鬼影和猪霍乱杆菌鬼影证明了裂解蛋白ID52-E-W4A的扩展适用性。敲除分子伴侣基因和表明ID52介导的BGs仍可发生裂解。相反,膜整合酶基因的过表达导致ID52-E失去裂解活性,这表明裂解蛋白ID52-E可能不再依赖SlyD或DnaJ发挥作用,MraY可能是ID52-E的作用靶点。本研究引入了一种利用ID52-E-W4A进行重组表达的新方法,加速了BG的形成,从而提高了BG的产量和生产率。