An efficient in vitro refolding of recombinant bacterial laccase in Escherichia coli

•In vitro refolding of recombinant bacterial laccase from Bacillus HR03 is studied.•We have shown that the drop dilution as a powerful method for refolding of laccase.•Differences in kinetic parameters of soluble and refolded enzyme were also observed.•Structural changes during the refolding monitor...

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Veröffentlicht in:Enzyme and microbial technology 2013-05, Vol.52 (6-7), p.325-330
Hauptverfasser: Mollania, Nasrin, Khajeh, Khosro, Ranjbar, Bijan, Rashno, Fatemeh, Akbari, Neda, Fathi-Roudsari, Mehrnoosh
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Sprache:eng
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Zusammenfassung:•In vitro refolding of recombinant bacterial laccase from Bacillus HR03 is studied.•We have shown that the drop dilution as a powerful method for refolding of laccase.•Differences in kinetic parameters of soluble and refolded enzyme were also observed.•Structural changes during the refolding monitored using fluorescence spectroscopy Laccases (benzenediol oxygen oxidoreductases, EC 1.10.3.2) are important multicopper enzymes that are used in many biotechnological processes. A recombinant form of laccase from Bacillus sp. HR03 was overexpressed in Escherichia coli BL-21(DE3). Inclusion body (IB) formation happens quite often during recombinant protein production. Hence, developing a protocol for efficient refolding of proteins from inclusion bodies to provide large amounts of active protein could be advantageous for structural and functional studies. Here, we have tried to find an efficient method of refolding for this bacterial enzyme. Solubilization of inclusion bodies was carried out in phosphate buffer pH 7, containing 8M urea and 4mM β-mercaptoethanol and refolding was performed using the dilution method. The effect of different additives was investigated on the refolding procedure of denaturated laccase. Mix buffer (phosphate buffer and citrate buffer, 100mM) containing 4mM ZnSO4 and 100mM sorbitol was selected as an optimized refolding buffer. Also Kinetic parameters of soluble and refolded laccase were analyzed.
ISSN:0141-0229
1879-0909
DOI:10.1016/j.enzmictec.2013.03.006