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Turkey Tail, Yun Zhi · 2009 · Journal Article

Low relevance

Improving the catalytic performance of fungal laccases in monoterpene-based reaction systems.

Trametes versicolor

OncologyImmune supportEnergy & fatigue
SpeciesTurkey Tail, Yun Zhi
JournalBiotechnology letters
Year2009

Key points

  • Ternary systems consisting of monoterpenes (alpha-pinene or D-limonene), tert-butanol and water were used as reaction media to enhance the catalytic performance of laccases from various fungi sources (Trametes versicolor, T. hirsuta and Botrytis cinerea)
  • The enzymes had improved catalytic efficiency (5- to 10-fold) in alpha-pinene-rich environment, while optimal reaction rates were in high-water content systems (15.5% v/v)
  • The stability of laccases was significantly improved in monoterpene-based systems (up to 90% residual enzyme activity after 24 h at 30 degrees C) in comparison with other non-conventional media
  • The results indicate that these ternary systems can increase the potential of laccases as catalysts for various oxidations

Metadata-grounded summary

Citation abstract

Ternary systems consisting of monoterpenes (alpha-pinene or D-limonene), tert-butanol and water were used as reaction media to enhance the catalytic performance of laccases from various fungi sources (Trametes versicolor, T. hirsuta and Botrytis cinerea). The enzymes had improved catalytic efficiency (5- to 10-fold) in alpha-pinene-rich environment, while optimal reaction rates were in high-water content systems (15.5% v/v). The stability of laccases was significantly improved in monoterpene-based systems (up to 90% residual enzyme activity after 24 h at 30 degrees C) in comparison with other non-conventional media. The results indicate that these ternary systems can increase the potential of laccases as catalysts for various oxidations.

Citation

Tzialla AA, Taha AA, Kalogeris E, Stamatis H (2009). Improving the catalytic performance of fungal laccases in monoterpene-based reaction systems. Biotechnology letters https://doi.org/10.1007/s10529-009-0014-5 PMID: 19458921

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