Production, purification, and characterization of p-diphenol oxidase (PDO) enzyme from lignolytic fungal isolate Schizophyllum commune MF-O5

  • Muhammad Faheem*
  • , Syed Ali Imran Bokhari
  • , Muhammad Arshad Malik
  • , Bashir Ahmad
  • , Muhammad Riaz
  • , Nafeesa Zahid
  • , Adil Hussain
  • , Abdul Ghani
  • , Hanif Ullah
  • , Waseem Shah
  • , Rashid Mehmood
  • , Khurshid Ahmad
  • , Hassam Rasheed
  • , Ali Zain
  • , Saddam Hussain
  • , Abrar Khan
  • , Muhammad Talha Yasin
  • , Hasnat Tariq
  • , Rizwanullah
  • , Muhammad Mudassir Basheir
  • Naqeeb Ullah Jogezai
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Fungi are producers of lignolytic extracellular enzymes which are used in industries like textile, detergents, biorefineries, and paper pulping. This study assessed for the production, purification, and characterization of novel p-diphenol oxidase (PDO; laccase) enzyme from lignolytic white-rot fungal isolate. Fungi samples collected from different areas of Pakistan were initially screened using guaiacol plate method. The maximum PDO producing fungal isolate was identified on the basis of ITS (internal transcribed spacer sequence of DNA of ribosomal RNA) sequencing. To get optimum enzyme yield, various growth and fermentation conditions were optimized. Later PDO was purified using ammonium sulfate precipitation, size exclusion, and anion exchange chromatography and characterized. It was observed that the maximum PDO producing fungal isolate was Schizophyllum commune (MF-O5). Characterization results showed that the purified PDO was a monomeric protein with a molecular mass of 68 kDa and showed stability at lower temperature (30 °C) for 1 h. The Km and Vmax values of the purified PDO recorded were 2.48 mM and 6.20 U/min. Thermal stability results showed that at 30 °C PDO had 119.17 kJ/K/mol Ea value and 33.64 min half-life. The PDO activity was stimulated by Cu2+ ion at 1.0 mM showing enhanced activity up to 111.04%. Strong inhibition effect was noted for Fe2+ ions at 1 mM showing 12.04% activity. The enzyme showed stability against 10 mM concentration oxidizing reducing agents like DMSO, EDTA, H2O2, NaOCl, and urea and retained more than 75% of relative activity. The characterization of purified PDO enzyme confirmed its tolerance against salt, metal ions, organic solvents, and surfactants indicating its ability to be used in the versatile commercial applications.

Original languageEnglish
Pages (from-to)867-888
Number of pages22
JournalFolia Microbiologica
Volume68
Issue number6
DOIs
StatePublished - Dec 2023
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2023, Institute of Microbiology, Academy of Sciences of the Czech Republic, v.v.i.

Keywords

  • 2′-azino-di(3-ethylbenzthiazoline-6-sulfonate)
  • ABTS 2
  • Characterization
  • Fungi
  • Guaiacol
  • PDO (p-diphenol oxidase/laccase)
  • Process optimization
  • Schizophyllum commune

ASJC Scopus subject areas

  • Microbiology

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