Enhanced extracellular production of laccase in Coprinopsis cinerea by silencing chitinase gene
Laccase, a copper-containing polyphenol oxidase, is an important green biocatalyst. In this study, Laccase Lcc5 was homologous recombinantly expressed in Coprinopsis cinerea and a novel strategy of silencing chitinase gene expression was used to enhance recombinant Lcc5 extracellular yield. Two crit...
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Veröffentlicht in: | Applied microbiology and biotechnology 2024-12, Vol.108 (1), p.324-324, Article 324 |
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Sprache: | eng |
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Zusammenfassung: | Laccase, a copper-containing polyphenol oxidase, is an important green biocatalyst. In this study, Laccase Lcc5 was homologous recombinantly expressed in
Coprinopsis cinerea
and a novel strategy of silencing chitinase gene expression was used to enhance recombinant Lcc5 extracellular yield. Two critical chitinase genes,
ChiEn1
and
ChiE2
, were selected by analyzing the transcriptome data of
C. cinerea
FA2222, and their silent expression was performed by RNA interference (RNAi). It was found that silencing either
ChiEn1
or
ChiE2
reduced sporulation and growth rate, and increased cell wall sensitivity, but had no significant effect on mycelial branching. Among them, the extracellular laccase activity of the
ChiE2
-silenced engineered strain Cc
lcc5
-anti
ChiE2
-5 and the control Cc
lcc5
-13 reached the highest values (38.2 and 25.5 U/mL, respectively) at 250 and 150 rpm agitation speeds, corresponding to productivity of 0.35 and 0.19 U/mL·h, respectively, in a 3-L fermenter culture. Moreover, since Cc
lcc5
-anti
ChiE2
-5 could withstand greater shear forces, its extracellular laccase activity was 2.6-fold higher than that of Cc
lcc5
-13 when the agitation speed was all at 250 rpm. To our knowledge, this is the first report of enhanced recombinant laccase production in
C. cinerea
by silencing the chitinase gene. This study will pave the way for laccase industrial production and accelerate the development of a
C. cinerea
high-expression system.
Key points
•
ChiEn1 and ChiE2 are critical chitinase genes in C. cinerea FA2222 genome.
•
Chitinase gene silencing enhanced the tolerance of C. cinerea to shear forces.
•
High homologous production of Lcc5 is achieved by fermentation in a 3-L fermenter. |
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ISSN: | 0175-7598 1432-0614 |
DOI: | 10.1007/s00253-024-13164-9 |