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A Comparative Analysis of Industrial Escherichia coli K–12 and B Strains in High-Glucose Batch Cultivations on Process-, Transcriptome- and Proteome Level

Overview of attention for article published in PLOS ONE, August 2013
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Title
A Comparative Analysis of Industrial Escherichia coli K–12 and B Strains in High-Glucose Batch Cultivations on Process-, Transcriptome- and Proteome Level
Published in
PLOS ONE, August 2013
DOI 10.1371/journal.pone.0070516
Pubmed ID
Authors

Karoline Marisch, Karl Bayer, Theresa Scharl, Juergen Mairhofer, Peter M. Krempl, Karin Hummel, Ebrahim Razzazi-Fazeli, Gerald Striedner

Abstract

Escherichia coli K-12 and B strains are among the most frequently used bacterial hosts for production of recombinant proteins on an industrial scale. To improve existing processes and to accelerate bioprocess development, we performed a detailed host analysis. We investigated the different behaviors of the E. coli production strains BL21, RV308, and HMS174 in response to high-glucose concentrations. Tightly controlled cultivations were conducted under defined environmental conditions for the in-depth analysis of physiological behavior. In addition to acquisition of standard process parameters, we also used DNA microarray analysis and differential gel electrophoresis (Ettan(TM) DIGE). Batch cultivations showed different yields of the distinct strains for cell dry mass and growth rate, which were highest for BL21. In addition, production of acetate, triggered by excess glucose supply, was much higher for the K-12 strains compared to the B strain. Analysis of transcriptome data showed significant alteration in 347 of 3882 genes common among all three hosts. These differentially expressed genes included, for example, those involved in transport, iron acquisition, and motility. The investigation of proteome patterns additionally revealed a high number of differentially expressed proteins among the investigated hosts. The subsequently selected 38 spots included proteins involved in transport and motility. The results of this comprehensive analysis delivered a full genomic picture of the three investigated strains. Differentially expressed groups for targeted host modification were identified like glucose transport or iron acquisition, enabling potential optimization of strains to improve yield and process quality. Dissimilar growth profiles of the strains confirm different genotypes. Furthermore, distinct transcriptome patterns support differential regulation at the genome level. The identified proteins showed high agreement with the transcriptome data and suggest similar regulation within a host at both levels for the identified groups. Such host attributes need to be considered in future process design and operation.

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Geographical breakdown

Country Count As %
Germany 1 <1%
France 1 <1%
Austria 1 <1%
Mexico 1 <1%
United States 1 <1%
Unknown 258 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 52 20%
Researcher 46 17%
Student > Bachelor 40 15%
Student > Master 30 11%
Student > Doctoral Student 10 4%
Other 27 10%
Unknown 58 22%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 74 28%
Agricultural and Biological Sciences 66 25%
Engineering 22 8%
Chemistry 10 4%
Unspecified 5 2%
Other 24 9%
Unknown 62 24%