Purification and properties of detergent-compatible extracellular alkaline protease from Scopulariopsis spp

Francois Niyongabo Niyonzima1, Sunil More

  • 1a Department of Biochemistry , Center for Post Graduate Studies, Jain University , Bangalore , India.

Insights

A fungal alkaline protease from Scopulariopsis spp. was purified and characterized. This enzyme shows stability at high pH and temperature, making it suitable for detergent formulations.

Area of Science:

  • Biochemistry
  • Enzymology
  • Microbiology

Background:

  • Fungal proteases are widely used in industrial applications.
  • Scopulariopsis spp. are known producers of extracellular enzymes.
  • Alkaline proteases with unique properties are of significant interest for biotechnological uses.

Purpose of the Study:

  • To purify and characterize a fungal alkaline protease from Scopulariopsis spp.
  • To assess the enzyme's stability and activity under various conditions.
  • To evaluate its potential application in detergent formulations.

Main Methods:

  • Purification using lectin-agarose chromatography.
  • Molecular mass determination by SDS-PAGE.
  • Enzyme activity assays at different pH, temperatures, and in the presence of various effectors.
  • Substrate specificity and kinetic analysis.
  • Stability tests with detergents and oxidizing agents.

Main Results:

  • A homogeneous monomeric glycoprotein protease with a molecular mass of 15 ± 1 kD was purified.
  • The enzyme exhibited optimal activity at pH 9.0 and 50°C, with stability in the alkaline range (pH 8.0-12.0).
  • It showed broad substrate specificity, stability in the presence of surfactants and oxidizing agents, and compatibility with detergents, effectively removing blood stains.

Conclusions:

  • The purified fungal alkaline protease possesses robust stability at alkaline pH and elevated temperatures.
  • Its properties suggest significant potential for application in detergent formulations.
  • Further research could explore its use in other industrial processes requiring stable alkaline proteases.