Aug 2026· Frontiers in Bioengineering and Biotechnology· Vol 14· 0 citations· 32 references
Medicine
Abstract
Extracellular protein expression in Escherichia coli is an elegant solution that addresses the complex issue of protein misfolding while simultaneously simplifying downstream processing steps. Human TNF-α was chosen as the target protein for export since it is a therapeutically important cytokine. Different genomic knockouts were tested for the ability to sustain and enhance protein expression, and BW25113 Δ(elaA + cysW) knockout was found to give a sustained and high level of expression. To improve secretion, various tags were tested, and the MBP tag at the N-terminal end was found to give maximum enhancement in the export of hTNF-α. Even the linker peptide was found to play a critical role in export, with the Ek linker giving the highest extracellular secretion, while the intein sequence completely blocked export. The co-expression of pSecAB, which is involved in protein transport to the periplasm, was also found to be helpful in enhancing extracellular protein titers. Interestingly, pelB performed poorly as compared to the native signal sequence of MBP, which gave better results. Culture conditions were optimized, and it was observed that growing cells in TB medium at a temperature of 25 °C, coupled with a pulse of concentrated nutrients at 24 h, led to a very high extracellular accumulation of ∼1.3 g/L of MBP-hTNF-α in shake flask culture. The protein was purified and tested using L929 cells for bioactivity. Thus, a combination of genomic and bioprocess strategies allowed us to obtain high levels of soluble and active extracellular expression of hTNF-α, making this a very attractive strategy for protein production.
Isolation of various groups of protein preparations is a crucial task in many areas of biochemical research. Creating an effective, simple and economically feasible system for recombinant protein production is highly valuable for both basic research and applied biotechnology. Most laboratory studies focus on bacterial...
O. Kostareva, Polina I. Blinova, S. Tishchenko et al.· BioTech· 0 citations
A case-study evaluation of a pBR322-derived expression system, previously applied to therapeutic peptides and insulin analogs, in combination with fed-batch cultivation for recombinant production of methionine aminopeptidase in E. coli, evaluating the performance of this system for methionine aminopeptidase as a stress...
G. Kuznetsov, Marina Yarovikova, E. Buslaeva et al.· Protein Expression and Purif...· 0 citations
High-yield recombinant protein expression is a critical requirement in biopharmaceutical development. The pET vector family is among the most widely used systems for protein production in Escherichia coli. Shilling et al. (2020) reported that insertion of a GAGA sequence within the T7lac promoter region of pET28a enhan...
Protein L is a κ light-chain-binding protein, which is widely used as an affinity ligand for antibody purification and characterization. However, manufacturable recombinant Protein L ligands remain insufficiently studied, particularly regarding how domain architecture affects production, processability, and product qua...
Xiao-Yong Jiang, Rui-Rui Wu, Ke-Xin Xu et al.· Protein Expression and Purif...· 0 citations
The soluble expression of EKL in E. coli is achieved and a highly active mutant is obtained, and a visual tool for the rapid detection of EKL activity is provided.
Chang-Chun Han, Jun-Hao Yue, Yuwen Tu et al.· Sheng wu gong cheng xue bao...· 0 citations
This work developed a Green Fluorescent Protein (GFP) secretion system by fusing GFP of the N-terminus sequence from the curli monomer protein while co-expressing the curli export machinery and found that secretion was sequence-specific, although no simple metric could predict success.
Anton Kan, S. Emani, Neel S. Joshi· ACS Synthetic Biology· 0 citations
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