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

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, ul...

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Autores principales: 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.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5773450/
https://www.ncbi.nlm.nih.gov/pubmed/29379768
http://dx.doi.org/10.1016/j.btre.2017.12.004
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author 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.
author_facet 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.
author_sort Neira-Vielma, Alberto A.
collection PubMed
description 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 K(m) value of 220 μM and V(max) 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.
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spelling pubmed-57734502018-01-29 Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate 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. Biotechnol Rep (Amst) Article 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 K(m) value of 220 μM and V(max) 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. Elsevier 2017-12-15 /pmc/articles/PMC5773450/ /pubmed/29379768 http://dx.doi.org/10.1016/j.btre.2017.12.004 Text en © 2017 Published by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
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.
Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
title Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
title_full Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
title_fullStr Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
title_full_unstemmed Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
title_short Purification and biochemical characterization of an Aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
title_sort purification and biochemical characterization of an aspergillus niger phytase produced by solid-state fermentation using triticale residues as substrate
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5773450/
https://www.ncbi.nlm.nih.gov/pubmed/29379768
http://dx.doi.org/10.1016/j.btre.2017.12.004
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