Literature DB >> 33586595

Partial purification and characterization of a thermophilic and alkali-stable laccase of Phoma herbarum isolate KU4 with dye-decolorization efficiency.

Rinku Debnath1, Prasenjit Mistry2, Priyabrata Roy1, Brindaban Roy2, Tanima Saha1.   

Abstract

Production of an extracellular thermophilic and alkali stable laccase from Phoma herbarum isolate KU4 was reported for the first time, both in submerged fermentation (SmF, highest 1590 U/mL) and solid state fermentation (SSF, highest 2014.21 U/mL) using agro-industrial residues. The laccase was partially purified to 7.93 fold with the apparent molecular weight of 298 kDa. The enzyme had pH optimum at 5.0 and temperature optimum at 50 °C, with maximum stability at pH 8.0. It showed activity towards various phenolic and non-phenolic compounds. The kinetic parameters, Km, Vmax and Kcat of the laccase for DMP were 0.216 mM, 270.27 U/mg and 506.69 s-1, respectively. Laccase activity was inhibited by various metal ions and conventional inhibitors, however, it was slightly increased by Zn2+. The laccase showed good decolorization efficiency towards four industrial dyes, namely, methyl violet (75.66%), methyl green (65%), indigo carmine (58%) and neutral red (42%) within 24 h. FTIR analysis of the decolorized products confirmed the degradation of the dyes. The decolorization efficiency of the enzyme suggests that the partially purified laccase could be used to decolorize synthetic dyes present in industrial effluents and for waste water treatments. The thermophilic and alkali stable laccase may also have wider potential industrial applications.

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Keywords:  Agro-industrial residues; Phoma herbarum isolate KU4; alkali-stable; laccase; protease; thermophilic

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Year:  2021        PMID: 33586595     DOI: 10.1080/10826068.2021.1875235

Source DB:  PubMed          Journal:  Prep Biochem Biotechnol        ISSN: 1082-6068            Impact factor:   2.162


  1 in total

1.  Biodecolorization and Ecotoxicity Abatement of Disperse Dye-Production Wastewater Treatment with Pycnoporus Laccase.

Authors:  Bin Wang; Yanjun Chen; Jian Guan; Yiwen Ding; Yide He; Xueying Zhang; Nosir Shukurov; Luiz Fernando Romanholo Ferreira; Jiayang Liu; Mingxin Zhu
Journal:  Int J Environ Res Public Health       Date:  2022-06-29       Impact factor: 4.614

  1 in total

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