Biochemical properties and yields of diverse bacterial laccase-like multicopper oxidases expressed in Escherichia coli
Биохимические свойства и выходы различных бактериальных лакказоподобных многомедных оксидаз, экспрессированных в Escherichia coli
2015-06-12
SCID: 54.1/ej8q395s
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CotA-type LMCOsEscherichia coli expressionalkaline pH stabilitybacterial laccase-like multicopper oxidasesoxygen-limited growth
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Abstract (AI)
Laccases are multi-copper oxidases that oxidize a broad range of substrates at the expense of molecular oxygen, without any need for co-factor regeneration. These enzymes bear high potential for the sustainable synthesis of fine chemicals and the modification of (bio)polymers. Here we describe cloning and expression of five novel bacterial laccase-like multi copper oxidases (LMCOs) of diverse origin which were identified by homology searches in online databases. Activity yields under different expression conditions and temperature stabilities were compared to three previously described enzymes from Bacillus subtilis, Bacillus pumilus and Bacillus clausii. In almost all cases, a switch to oxygen-limited growth conditions after induction increased volumetric activity considerably. For proteins with predicted signal peptides for secretion, recombinant expression with and without signal sequence was investigated. Bacillus CotA-type LMCOs outperformed enzymes from Streptomyces and Gram-negative bacteria with respect to activity yields in Escherichia coli and application relevant biochemical properties. The novel Bacillus coagulans LMCO combined high activity yields in E. coli with unprecedented activity at strong alkaline pH and high storage stability, making it a promising candidate for further development.
Key Findings
1
Bacillus CotA-type multicopper oxidases showed higher activity yields and more application-relevant biochemical properties than enzymes from Streptomyces and Gram-negative bacteria.
2
Expression strategies were compared for proteins with predicted secretion signals, including recombinant production with and without their signal sequences.
3
Five novel bacterial laccase-like multicopper oxidases were identified by database homology searches, cloned, and expressed in Escherichia coli.
4
Oxygen-limited growth after induction considerably increased volumetric activity for almost all tested enzymes.
5
The Bacillus coagulans multicopper oxidase combined high E. coli activity yields with unprecedented activity at strongly alkaline pH and high storage stability.
Research Object
Novel and previously described bacterial laccase-like multicopper oxidases (LMCOs) expressed in Escherichia coli
Research Subject
Their recombinant expression yields and biochemical properties, particularly activity under alkaline conditions and temperature/storage stability, under different expression conditions
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2015-06-12
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