Turkey Tail, Yun Zhi · 2016 · Journal Article
Medium relevanceFunctional expression, production, and biochemical characterization of a laccase using yeast surface display technology.
Trametes versicolor
Key points
- A Trametes versicolor laccase was functionally expressed on the membrane surface of Saccharomyces cerevisiae EBY100
- Laccase expression was increased 6.57-fold by medium optimization and surpassed production by the native strain
- Optimum oxidization of all substrates by laccase was observed at pH 3
- Laccase showed high affinity towards substrates used with Km (mM) and Vmax (μmol min -1 ) values of 0.57 ± 0.0047 and 24.55 ± 0.64, 1.52 ± 0.52 and 9.25 ± 1.78, and 2.67 ± 0.12 and 11.26 ± 0.75, were reported for ABTS, 2, 6-DMP and GUA, respectively
- EDTA and NaN 3 displayed none competitive inhibition towards laccase activity
- The optimum temperature for activity was 50 °C; however, the enzyme was stable over a wide range of temperatures (25-70 °C)
Metadata-grounded summary
Citation abstract
A Trametes versicolor laccase was functionally expressed on the membrane surface of Saccharomyces cerevisiae EBY100. Laccase expression was increased 6.57-fold by medium optimization and surpassed production by the native strain. Maximal laccase and biomass production reached 19 735 ± 1719 Ug -1 and 6.22 ± 0.53 gL -1 respectively, after 2 d of culture. Optimum oxidization of all substrates by laccase was observed at pH 3. Laccase showed high affinity towards substrates used with Km (mM) and Vmax (μmol min -1 ) values of 0.57 ± 0.0047 and 24.55 ± 0.64, 1.52 ± 0.52 and 9.25 ± 1.78, and 2.67 ± 0.12 and 11.26 ± 0.75, were reported for ABTS, 2, 6-DMP and GUA, respectively. EDTA and NaN 3 displayed none competitive inhibition towards laccase activity. The optimum temperature for activity was 50 °C; however, the enzyme was stable over a wide range of temperatures (25-70 °C). The biologically immobilized laccase showed high reusability towards phenolic substrates and low reusability with non-phenolic substrates. High affinity for a diversity phenolic compounds and great ethanol tolerance substantiates this laccase/yeast biocatalyst potential for application in the production of bioethanol.
Citation
Bertrand B, Trejo-Hernández MR, Morales-Guzmán D, Caspeta L, Suárez Rodríguez R, Martínez-Morales F (2016). Functional expression, production, and biochemical characterization of a laccase using yeast surface display technology. Fungal biology https://doi.org/10.1016/j.funbio.2016.08.009 PMID: 27890094
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