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Accelerated production of α2,8- and α2,9-linked polysialic acid in recombinant Escherichia coli using high cell density cultivation.
Bartling, Bastian; Brüchle, Nora C; Rehfeld, Johanna S; Boßmann, Daniel; Fiebig, Timm; Litschko, Christa; Fohrer, Jörg; Gerardy-Schahn, Rita; Scheper, Thomas; Beutel, Sascha.
Affiliation
  • Bartling B; Institute of Technical Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
  • Brüchle NC; Institute of Technical Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
  • Rehfeld JS; Institute of Technical Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
  • Boßmann D; Institute of Technical Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
  • Fiebig T; Institute of Clinical Biochemistry, Hannover Medical School, D-30625 Hannover, Germany.
  • Litschko C; Institute of Clinical Biochemistry, Hannover Medical School, D-30625 Hannover, Germany.
  • Fohrer J; Institute of Organic Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
  • Gerardy-Schahn R; Institute of Clinical Biochemistry, Hannover Medical School, D-30625 Hannover, Germany.
  • Scheper T; Institute of Technical Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
  • Beutel S; Institute of Technical Chemistry, Leibniz University Hannover, D-30167 Hannover, Germany.
Biotechnol Rep (Amst) ; 28: e00562, 2020 Dec.
Article in En | MEDLINE | ID: mdl-33304838
Polysialic acid (polySia) are α2,8- and/or α2,9-linked homopolymers with interesting properties for meningococcal vaccine development or the cure of human neurodegenerative disorders. With the goal to avoid large scale production of pathogenic bacteria, we compare in the current study the efficacy of conventional polySia production to recombinant approaches using the engineered laboratory safety strain E. coli BL21. High cell density cultivation (HCDC) experiments were performed in two different bioreactor systems. Increased cell densities of up to 11.3 (±0.4) g/L and polySia concentrations of up to 774 (±18) mg/L were reached in E. coli K1. However, cultivation of engineered E. coli BL21 strains delivered comparable cell densities but a maximum of only 133 mg/L polySia. Using established downstream procedures, host cell DNA and proteins were removed. All recombinant polySia products showed an identical degree of polymerization >90. Polymers with different glycosidic linkages could be successfully differentiated by nuclear magnetic resonance spectroscopy.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Biotechnol Rep (Amst) Year: 2020 Document type: Article Affiliation country: Germany Country of publication: Netherlands

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Biotechnol Rep (Amst) Year: 2020 Document type: Article Affiliation country: Germany Country of publication: Netherlands