Literature DB >> 15941663

Biochemical characterization and molecular evidence of a laccase from the bird's nest fungus Cyathus bulleri.

Kavita Vasdev1, Shikha Dhawan, Rajeev Kumar Kapoor, Ramesh Chander Kuhad.   

Abstract

Cyathus bulleri, a bird's nest fungus, known to decolorize polymeric dye Poly R-478, was found to produce 8 U ml(-1) of laccase in malt extract broth. Laccase activity appeared as a single band on non-denaturing gel. Laccase was purified to homogeneity by anion exchange chromatography and gel filtration. The enzyme was a monomer with an apparent molecular mass of 60 kD, pI of 3.7 and was stable in the pH range of 2-6 with an optimum pH of 5.2. The optimal reaction temperature was 45 degrees C and the enzyme lost its activity above 70 degrees C. Enzyme could oxidize a broad range of various phenolic substrates. K(m) values for ABTS, 2,6-dimethoxyphenol, guaiacol, and ferulic acid were found to be 48.6, 56, 22, and 14 mM while K(cat) values were 204, 180, 95.6, and 5.2, respectively. It was completely inhibited by KCN, NaN(3), beta-mercaptoethanol, HgCl(2), and SDS, while EDTA had no effect on enzyme activity. The N-terminal amino acid sequence of C. bulleri laccase showed close homology to N-terminal sequences of laccase from other white-rot fungi. A 150 bp gene sequence encoding copper-binding domains I and II was most similar to the sequence encoding a laccase from Pycnoporus cinnabarinus with 74.8% level of similarity.

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Year:  2005        PMID: 15941663     DOI: 10.1016/j.fgb.2005.03.013

Source DB:  PubMed          Journal:  Fungal Genet Biol        ISSN: 1087-1845            Impact factor:   3.495


  7 in total

1.  Kinetic characterization of laccase from Bacillus atrophaeus, and its potential in juice clarification in free and immobilized forms.

Authors:  Lokesh Kumar Narnoliya; Neera Agarwal; Satya N Patel; Sudhir P Singh
Journal:  J Microbiol       Date:  2019-08-28       Impact factor: 3.422

2.  Gel-Based Purification and Biochemical Study of Laccase Isozymes from Ganoderma sp. and Its Role in Enhanced Cotton Callogenesis.

Authors:  Amit Kumar; Deepti Singh; Krishna K Sharma; Sakshi Arora; Amarjeet K Singh; Sarvajeet S Gill; Barkha Singhal
Journal:  Front Microbiol       Date:  2017-04-20       Impact factor: 5.640

3.  Laccase production by Coriolopsis caperata RCK2011: optimization under solid state fermentation by Taguchi DOE methodology.

Authors:  Preeti Nandal; Sreenivas Rao Ravella; Ramesh Chander Kuhad
Journal:  Sci Rep       Date:  2013       Impact factor: 4.379

4.  Lcc1 and Lcc5 are the main laccases secreted in liquid cultures of Coprinopsis cinerea strains.

Authors:  Martin Rühl; Andrzej Majcherczyk; Ursula Kües
Journal:  Antonie Van Leeuwenhoek       Date:  2013-01-23       Impact factor: 2.271

5.  Cloning, sequence analysis, expression of Cyathus bulleri laccase in Pichia pastoris and characterization of recombinant laccase.

Authors:  Neha Garg; Nora Bieler; Tenzin Kenzom; Meenu Chhabra; Marion Ansorge-Schumacher; Saroj Mishra
Journal:  BMC Biotechnol       Date:  2012-10-23       Impact factor: 2.563

6.  Temperature affects the production, activity and stability of ligninolytic enzymes in Pleurotus ostreatus and Trametes versicolor.

Authors:  J Snajdr; P Baldrian
Journal:  Folia Microbiol (Praha)       Date:  2007       Impact factor: 2.629

7.  Production of laccase by Pynoporus sanguineus using 2,5 - Xylidine and ethanol.

Authors:  Viviane S Valeriano; Anna Maria F Silva; Mariângela F Santiago; Maria T F Bara; Telma A Garcia
Journal:  Braz J Microbiol       Date:  2009-12-01       Impact factor: 2.476

  7 in total

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