Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate

•Extracellular phytase from A. niger has attractive biochemical properties as an animal feed additive•A new biocatalyst was high thermostability and resistance to acidic pHvalues was produced and purified.•Phytase was as able to hydrolyze a large number of phosphate substrates, with high yields.•A g...

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Veröffentlicht in:Biotechnology reports (Amsterdam, Netherlands) Netherlands), 2018-03, Vol.17 (C), p.49-54
Hauptverfasser: Neira-Vielma, Alberto A., Aguilar, Cristóbal N., Ilyina, Anna, Contreras-Esquivel, Juan C., Carneiro-da-Cunha, María das Graça, Michelena-Álvarez, Georgina, Martínez-Hernández, José L.
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Sprache:eng
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Zusammenfassung:•Extracellular phytase from A. niger has attractive biochemical properties as an animal feed additive•A new biocatalyst was high thermostability and resistance to acidic pHvalues was produced and purified.•Phytase was as able to hydrolyze a large number of phosphate substrates, with high yields.•A great variety of metal ions showed to have a beneficent effect on the enzyme, significantly increasing its catalysis. In this study, an extracellular phytase produced by Aspergillus niger 7A-1, was biochemically characterized for possible industrial application. The enzyme was purified from a crude extract obtained by solid-state fermentation (SSF) of triticale waste. The extract was obtained by microfiltration, ultrafiltration (300, 100 and 30 kDa) and DEAE-Sepharose column chromatography. The molecular weight of the purified enzyme was estimated to be 89 kDa by SDS-PAGE. The purified enzyme was most active at pH 5.3 and 56 °C, and retained 50% activity over a wide pH range of 4 to 7. The enzymatic thermostability assay showed that the enzyme retained more than 70% activity at 80 °C for 60 s, 40% activity for 120 s and 9% after 300 s. The phytase showed broad substrate specificity, a Km value of 220 μM and Vmax of 25 μM/min. The purified phytase retained 50% of its activity with phosphorylated compounds such as phenyl phosphate, 1-Naphthyl phosphate, 2-Naphthyl phosphate, p-Nitrophenyl phosphate and Glycerol-2-phosphate. The inhibition of phytase activity by metal ions was observed to be drastically inhibited (50%) by Ca++ and was slightly inhibited (10%) by Ni++, K+, and Na+, at 10 and 20 mM concentrations. A positive effect was obtained with Mg++, Mn++, Cu++, Cd++ and Ba++ at 25 and 35% with stimulatory effect on the phytase activity.
ISSN:2215-017X
2215-017X
DOI:10.1016/j.btre.2017.12.004