A High Redox Potential Laccase from Pycnoporus sanguineus RP15: Potential Application for Dye Decolorization
Высокопотенциальная окислительно-восстановительная лакказа из Pycnoporus sanguineus RP15: потенциальное применение для обесцвечивания красителей
2016-05-05
SCID: 54.1/fzxpzusn
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Pycnoporus sanguineushigh-redox-potential laccaseresponse surface methodologysolid-state fermentationsynthetic dye decolorization
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Abstract (AI)
Laccase production by Pycnoporus sanguineus RP15 grown in wheat bran and corncob under solid-state fermentation was optimized by response surface methodology using a Central Composite Rotational Design. A laccase (Lacps1) was purified and characterized and the potential of the pure Lacps1 and the crude culture extract for synthetic dye decolorization was evaluated. At optimal conditions (eight days, 26 °C, 18% (w/w) milled corncob, 0.8% (w/w) NH₄Cl and 50 mmol·L(-1) CuSO₄, initial moisture 4.1 mL·g(-1)), the laccase activity reached 138.6 ± 13.2 U·g(-1). Lacps1 was a monomeric glycoprotein (67 kDa, 24% carbohydrate). Optimum pH and temperature for the oxidation of 2,2'-azino-bis(3-ethylbenzthiazoline-6-sulfonate) (ABTS) were 4.4 and 74.4 °C, respectively. Lacps1 was stable at pH 3.0-8.0, and after two hours at 55-60 °C, presenting high redox potential (0.747 V vs. NHE). ABTS was oxidized with an apparent affinity constant of 147.0 ± 6.4 μmol·L(-1), maximum velocity of 413.4 ± 21.2 U·mg(-1) and catalytic efficiency of 3140.1 ± 149.6 L·mmol(-1)·s(-1). The maximum decolorization percentages of bromophenol blue (BPB), remazol brilliant blue R and reactive blue 4 (RB4), at 25 or 40 °C without redox mediators, reached 90%, 80% and 60%, respectively, using either pure Lacps1 or the crude extract. This is the first study of the decolorization of BPB and RB4 by a P. sanguineus laccase. The data suggested good potential for treatment of industrial dye-containing effluents.
Key Findings
1
Lacps1 oxidized ABTS optimally at pH 4.4 and 74.4 °C, remained stable from pH 3.0–8.0, and showed catalytic efficiency of 3140.1 ± 149.6 L·mmol⁻¹·s⁻¹.
2
Response surface optimization of solid-state fermentation yielded laccase activity of 138.6 ± 13.2 U·g⁻¹ from Pycnoporus sanguineus RP15.
3
The purified Lacps1 laccase is a 67 kDa monomeric glycoprotein containing 24% carbohydrate and has a high redox potential of 0.747 V versus NHE.
4
The study provides the first reported decolorization of bromophenol blue and reactive blue 4 by a P. sanguineus laccase, supporting potential treatment of dye-containing industrial effluents.
5
Without redox mediators, pure Lacps1 or crude extract decolorized bromophenol blue, remazol brilliant blue R, and reactive blue 4 by up to 90%, 80%, and 60%, respectively.
Research Object
The high-redox-potential laccase Lacps1 from Pycnoporus sanguineus RP15 and its crude culture extract, produced under solid-state fermentation
Research Subject
Lacps1’s biochemical properties, catalytic performance, stability, and ability to decolorize synthetic dyes
Publication Details
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2016-05-05
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