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
Ana Lúcia Ribeiro Latorre Zimbardi, Priscila Cilene León Bueno de Camargo, Sibeli Carli, Sidney Aquino Neto, Luana Parras Meleiro, José Cesar Rosa, Adalgisa Rodrigues de Andrade, João M. P. Jorge, Rosa dos Prazeres Melo Furriel
2016-05-05

Pycnoporus sanguineushigh-redox-potential laccaseresponse surface methodologysolid-state fermentationsynthetic dye decolorization
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.
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.

The high-redox-potential laccase Lacps1 from Pycnoporus sanguineus RP15 and its crude culture extract, produced under solid-state fermentation

Lacps1’s biochemical properties, catalytic performance, stability, and ability to decolorize synthetic dyes

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2016-05-05
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Ana Lúcia Ribeiro Latorre Zimbardi
Priscila Cilene León Bueno de Camargo
Sibeli Carli
Sidney Aquino Neto
Luana Parras Meleiro
José Cesar Rosa
Adalgisa Rodrigues de Andrade
João M. P. Jorge
Rosa dos Prazeres Melo Furriel
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