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 systems for heterologous gene expression. However, such systems can encounter major difficulties with target proteins that have specific properties. Some proteins can aggregate, form insoluble inclusion bodies or undergo proteolytic cleavage during overproduction. Moreover, they can be toxic, and thus adversely affect the host cell when overproduced. These issues can be circumvented by using cellular secretion systems to export the target protein from the cell during production. The present study compares three established systems for exporting target proteins to the bacterial cell surface. Three model proteins were selected: the cytokine IL-17A, the catalytic domain of TEV protease, and the calcium-binding domain of nucleobindin 1. Three protein export systems were used: the first was based on the E. coli outer membrane OmpA protein, the second on the E. coli Ag43 autotransporter of the AIDA-I family, and the third on the INP of Pseudomonas syringae. Recombinant proteins were cleaved by site-directed chemical proteolysis.
Developed in the 1970s, recombinant DNA technology transformed biotechnology by enabling the production of recombinant proteins through molecular cloning. This technique has enabled the development of more effective diagnostics, drugs, and vaccines. However, the production of recombinant proteins, especially artificial...
Mariana de Andrade Fernandes, Cristina Toscano Fonseca· Brazilian Journal of Health...· 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
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 kno...
Akanksha, Sounak Dasgupta, Priyanka Jain et al.· Frontiers in Bioengineering...· 0 citations
Protein expression and purification remain critical steps in basic research, biotechnology, and industrial applications. Here, p2GUS, a modular
Escherichia coli
expression system generated through targeted modification of Precursor 1, a parental pBAD-derived vector, is described. The principal feature is a tand...
Pedro Ferro-Gallego, Lourdes Domínguez-Gerpe· Applied Microbiology and Bio...· 0 citations
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
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...