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Impact of the Expression System on Recombinant Protein Production in Escherichia coli BL21
被引:75
作者:
Lozano Terol, Gema
[1
]
Gallego-Jara, Julia
[1
]
Sola Martinez, Rosa Alba
[1
]
Martinez Vivancos, Adrian
[1
]
Canovas Diaz, Manuel
[1
]
de Diego Puente, Teresa
[1
]
机构:
[1] Univ Murcia, Dept Biochem & Mol Biol & Immunol B, Fac Chem, Reg Campus Int Excellence,Campus Mare Nostrum, Campus Espinardo, Murcia, Spain
关键词:
Escherichia coli;
recombinant protein;
expression system;
promoter;
origin of replication;
microbial factory;
HIGH-LEVEL EXPRESSION;
COPY NUMBER;
PROMOTER;
REPLICATION;
VERSATILE;
PLASMIDS;
VECTORS;
PATHWAY;
ACETATE;
ORIGIN;
D O I:
10.3389/fmicb.2021.682001
中图分类号:
Q93 [微生物学];
学科分类号:
071005 ;
100705 ;
摘要:
Recombinant protein production for medical, academic, or industrial applications is essential for our current life. Recombinant proteins are obtained mainly through microbial fermentation, with Escherichia coli being the host most used. In spite of that, some problems are associated with the production of recombinant proteins in E. coli, such as the formation of inclusion bodies, the metabolic burden, or the inefficient translocation/transport system of expressed proteins. Optimizing transcription of heterologous genes is essential to avoid these drawbacks and develop competitive biotechnological processes. Here, expression of YFP reporter protein is evaluated under the control of four promoters of different strength (P-T7lac, P-trc, P-tac, and P-BAD) and two different replication origins (high copy number pMB1 ' and low copy number p15A). In addition, the study has been carried out with the E. coli BL21 wt and the ackA mutant strain growing in a rich medium with glucose or glycerol as carbon sources. Results showed that metabolic burden associated with transcription and translation of foreign genes involves a decrease in recombinant protein expression. It is necessary to find a balance between plasmid copy number and promoter strength to maximize soluble recombinant protein expression. The results obtained represent an important advance on the most suitable expression system to improve both the quantity and quality of recombinant proteins in bioproduction engineering.
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页数:12
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