Abstract
The effect of fusing the PelB signal sequence to lysine/cadaverine antiporter (CadB) on the bioconversion of l-lysine to cadaverine was investigated. To construct a whole-cell biocatalyst for cadaverine production, four expression plasmids were constructed for the co-expression of lysine decarboxylase (CadA) and lysine/cadaverine antiporter (CadB) in Escherichia coli. Expressing CadB with the PelB signal sequence increased cadaverine production by 12 %, and the optimal expression plasmid, pETDuet-pelB-CadB-CadA, contained two T7 promoter-controlled genes, CadA and the PelB-CadB fusion protein. Based on pETDuet-pelB-CadB-CadA, a whole-cell system for the bioconversion of l-lysine to cadaverine was constructed, and three strategies for l-lysine feeding were evaluated to eliminate the substrate inhibition problem. A cadaverine titer of 221 g l−1 with a molar yield of 92 % from lysine was obtained.
Original language | English |
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Pages (from-to) | 799-806 |
Number of pages | 8 |
Journal | Biotechnology Letters |
Volume | 37 |
Issue number | 4 |
DOIs | |
State | Published - Apr 2015 |
Keywords
- Cadaverine
- Co-expression
- Lysine/cadaverine antiporter
- PelB
- Whole-cell bioconversion