CotA, a Multicopper Oxidase from Bacillus pumilus WH4, Exhibits Manganese-Oxidase Activity
CotA, многомедная оксидаза из Bacillus pumilus WH4, проявляет марганецоксидазную активность
2013-04-05
SCID: 54.1/79hjx53q
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Bacillus pumilus WH4CotA multicopper oxidaseMn(II) oxidationbiogenic manganese oxidesheterologous protein expression
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Abstract (AI)
Multicopper oxidases (MCOs) are a family of enzymes that use copper ions as cofactors to oxidize various substrates. Previous research has demonstrated that several MCOs such as MnxG, MofA and MoxA can act as putative Mn(II) oxidases. Meanwhile, the endospore coat protein CotA from Bacillus species has been confirmed as a typical MCO. To study the relationship between CotA and the Mn(II) oxidation, the cotA gene from a highly active Mn(II)-oxidizing strain Bacillus pumilus WH4 was cloned and overexpressed in Escherichia coli strain M15. The purified CotA contained approximately four copper atoms per molecule and showed spectroscopic properties typical of blue copper oxidases. Importantly, apart from the laccase activities, the CotA also displayed substantial Mn(II)-oxidase activities both in liquid culture system and native polyacrylamide gel electrophoresis. The optimum Mn(II) oxidase activity was obtained at 53°C in HEPES buffer (pH 8.0) supplemented with 0.8 mM CuCl2. Besides, the addition of o-phenanthroline and EDTA both led to a complete suppression of Mn(II)-oxidizing activity. The specific activity of purified CotA towards Mn(II) was 0.27 U/mg. The Km, Vmax and kcat values towards Mn(II) were 14.85±1.17 mM, 3.01×10(-6)±0.21 M·min(-1) and 0.32±0.02 s(-1), respectively. Moreover, the Mn(II)-oxidizing activity of the recombinant E. coli strain M15-pQE-cotA was significantly increased when cultured both in Mn-containing K liquid medium and on agar plates. After 7-day liquid cultivation, M15-pQE-cotA resulted in 18.2% removal of Mn(II) from the medium. Furthermore, the biogenic Mn oxides were clearly observed on the cell surfaces of M15-pQE-cotA by scanning electron microscopy. To our knowledge, this is the first report that provides the direct observation of Mn(II) oxidation with the heterologously expressed protein CotA, Therefore, this novel finding not only establishes the foundation for in-depth study of Mn(II) oxidation mechanisms, but also offers a potential biocatalyst for Mn(II) removal.
Key Findings
1
CotA achieves optimal Mn(II)-oxidase activity at 53°C in HEPES buffer at pH 8.0 with 0.8 mM CuCl2; o-phenanthroline and EDTA completely suppress activity.
2
CotA from Bacillus pumilus WH4 is a multicopper oxidase containing approximately four copper atoms per molecule and exhibiting typical blue-copper oxidase spectra.
3
Purified CotA displays substantial Mn(II)-oxidase activity in addition to laccase activity, with a specific activity of 0.27 U/mg.
4
Recombinant Escherichia coli expressing CotA oxidizes Mn(II), removing 18.2% after seven days and producing visible biogenic manganese oxides on cell surfaces; this is reported as the first direct observation with heterologously expressed CotA.
5
The Mn(II) oxidation kinetics of CotA are characterized by Km of 14.85±1.17 mM, Vmax of 3.01×10(-6)±0.21 M·min(-1), and kcat of 0.32±0.02 s(-1).
Research Object
CotA multicopper oxidase from Bacillus pumilus WH4 and its recombinant expression in Escherichia coli M15
Research Subject
The Mn(II)-oxidase activity, catalytic parameters, and dependence on reaction conditions and metal chelators
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2013-04-05
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