Isolation of a thermostable acid phytase from Aspergillus niger UFV-1 with strong proteolysis resistance

Braz J Microbiol. 2015 Mar 1;46(1):251-60. doi: 10.1590/S1517-838220120037. eCollection 2015 Mar.

Abstract

An Aspergillus niger UFV-1 phytase was characterized and made available for industrial application. The enzyme was purified via ultrafiltration followed by acid precipitation, ion exchange and gel filtration chromatography. This protein exhibited a molecular mass of 161 kDa in gel filtration and 81 kDa in sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE), indicating that it may be a dimer. It presented an optimum temperature of 60 °C and optimum pH of 2.0. The K M for sodium phytate hydrolysis was 30.9 mM, while the k cat and k cat / K M were 1.46 ×10 (5) s (-1) and 4.7 × 10 (6) s (-1) .M (-1) , respectively. The purified phytase exhibited broad specificity on a range of phosphorylated compounds, presenting activity on sodium phytate, p-NPP, 2- naphthylphosphate, 1- naphthylphosphate, ATP, phenyl-phosphate, glucose-6-phosphate, calcium phytate and other substrates. Enzymatic activity was slightly inhibited by Mg (2+) , Cd (2+) , K (+) and Ca (2+) , and it was drastically inhibited by F (-) . The enzyme displayed high thermostability, retaining more than 90% activity at 60 °C during 120 h and displayed a t 1/2 of 94.5 h and 6.2 h at 70 °C and 80 °C, respectively. The enzyme demonstrated strong resistance toward pepsin and trypsin, and it retained more than 90% residual activity for both enzymes after 1 h treatment. Additionally, the enzyme efficiently hydrolyzed phytate in livestock feed, liberating 15.3 μmol phosphate/mL after 2.5 h of treatment.

Keywords: dephosphorylation; phosphatase; phytic acid.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • 6-Phytase / chemistry
  • 6-Phytase / isolation & purification*
  • 6-Phytase / metabolism*
  • Aspergillus niger / enzymology*
  • Chemical Precipitation
  • Chromatography, Gel
  • Chromatography, Ion Exchange
  • Electrophoresis, Polyacrylamide Gel
  • Enzyme Inhibitors / analysis
  • Enzyme Stability
  • Hydrogen-Ion Concentration
  • Hydrolysis
  • Kinetics
  • Molecular Weight
  • Peptide Hydrolases / metabolism
  • Phytic Acid / metabolism
  • Protein Multimerization
  • Proteolysis
  • Substrate Specificity
  • Temperature
  • Ultrafiltration

Substances

  • Enzyme Inhibitors
  • Phytic Acid
  • 6-Phytase
  • Peptide Hydrolases