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Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10

BACKGROUND: Nitrilases attract increasing attention due to their utility in the mild hydrolysis of nitriles. According to activity and gene screening, filamentous fungi are a rich source of nitrilases distinct in evolution from their widely examined bacterial counterparts. However, fungal nitrilases...

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Autores principales: Kaplan, Ondřej, Bezouška, Karel, Plíhal, Ondřej, Ettrich, Rüdiger, Kulik, Natallia, Vaněk, Ondřej, Kavan, Daniel, Benada, Oldřich, Malandra, Anna, Šveda, Ondřej, Veselá, Alicja B, Rinágelová, Anna, Slámová, Kristýna, Cantarella, Maria, Felsberg, Jürgen, Dušková, Jarmila, Dohnálek, Jan, Kotik, Michael, Křen, Vladimír, Martínková, Ludmila
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3023689/
https://www.ncbi.nlm.nih.gov/pubmed/21210990
http://dx.doi.org/10.1186/1472-6750-11-2
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author Kaplan, Ondřej
Bezouška, Karel
Plíhal, Ondřej
Ettrich, Rüdiger
Kulik, Natallia
Vaněk, Ondřej
Kavan, Daniel
Benada, Oldřich
Malandra, Anna
Šveda, Ondřej
Veselá, Alicja B
Rinágelová, Anna
Slámová, Kristýna
Cantarella, Maria
Felsberg, Jürgen
Dušková, Jarmila
Dohnálek, Jan
Kotik, Michael
Křen, Vladimír
Martínková, Ludmila
author_facet Kaplan, Ondřej
Bezouška, Karel
Plíhal, Ondřej
Ettrich, Rüdiger
Kulik, Natallia
Vaněk, Ondřej
Kavan, Daniel
Benada, Oldřich
Malandra, Anna
Šveda, Ondřej
Veselá, Alicja B
Rinágelová, Anna
Slámová, Kristýna
Cantarella, Maria
Felsberg, Jürgen
Dušková, Jarmila
Dohnálek, Jan
Kotik, Michael
Křen, Vladimír
Martínková, Ludmila
author_sort Kaplan, Ondřej
collection PubMed
description BACKGROUND: Nitrilases attract increasing attention due to their utility in the mild hydrolysis of nitriles. According to activity and gene screening, filamentous fungi are a rich source of nitrilases distinct in evolution from their widely examined bacterial counterparts. However, fungal nitrilases have been less explored than the bacterial ones. Nitrilases are typically heterogeneous in their quaternary structures, forming short spirals and extended filaments, these features making their structural studies difficult. RESULTS: A nitrilase gene was amplified by PCR from the cDNA library of Aspergillus niger K10. The PCR product was ligated into expression vectors pET-30(+) and pRSET B to construct plasmids pOK101 and pOK102, respectively. The recombinant nitrilase (Nit-ANigRec) expressed in Escherichia coli BL21-Gold(DE3)(pOK101/pTf16) was purified with an about 2-fold increase in specific activity and 35% yield. The apparent subunit size was 42.7 kDa, which is approx. 4 kDa higher than that of the enzyme isolated from the native organism (Nit-ANigWT), indicating post-translational cleavage in the enzyme's native environment. Mass spectrometry analysis showed that a C-terminal peptide (Val(327 )- Asn(356)) was present in Nit-ANigRec but missing in Nit-ANigWT and Asp(298)-Val(313 )peptide was shortened to Asp(298)-Arg(310 )in Nit-ANigWT. The latter enzyme was thus truncated by 46 amino acids. Enzymes Nit-ANigRec and Nit-ANigWT differed in substrate specificity, acid/amide ratio, reaction optima and stability. Refolded recombinant enzyme stored for one month at 4°C was fractionated by gel filtration, and fractions were examined by electron microscopy. The late fractions were further analyzed by analytical centrifugation and dynamic light scattering, and shown to consist of a rather homogeneous protein species composed of 12-16 subunits. This hypothesis was consistent with electron microscopy and our modelling of the multimeric nitrilase, which supports an arrangement of dimers into helical segments as a plausible structural solution. CONCLUSIONS: The nitrilase from Aspergillus niger K10 is highly homologous (≥86%) with proteins deduced from gene sequencing in Aspergillus and Penicillium genera. As the first of these proteins, it was shown to exhibit nitrilase activity towards organic nitriles. The comparison of the Nit-ANigRec and Nit-ANigWT suggested that the catalytic properties of nitrilases may be changed due to missing posttranslational cleavage of the former enzyme. Nit-ANigRec exhibits a lower tendency to form filaments and, moreover, the sample homogeneity can be further improved by in vitro protein refolding. The homogeneous protein species consisting of short spirals is expected to be more suitable for structural studies.
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spelling pubmed-30236892011-01-20 Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10 Kaplan, Ondřej Bezouška, Karel Plíhal, Ondřej Ettrich, Rüdiger Kulik, Natallia Vaněk, Ondřej Kavan, Daniel Benada, Oldřich Malandra, Anna Šveda, Ondřej Veselá, Alicja B Rinágelová, Anna Slámová, Kristýna Cantarella, Maria Felsberg, Jürgen Dušková, Jarmila Dohnálek, Jan Kotik, Michael Křen, Vladimír Martínková, Ludmila BMC Biotechnol Research Article BACKGROUND: Nitrilases attract increasing attention due to their utility in the mild hydrolysis of nitriles. According to activity and gene screening, filamentous fungi are a rich source of nitrilases distinct in evolution from their widely examined bacterial counterparts. However, fungal nitrilases have been less explored than the bacterial ones. Nitrilases are typically heterogeneous in their quaternary structures, forming short spirals and extended filaments, these features making their structural studies difficult. RESULTS: A nitrilase gene was amplified by PCR from the cDNA library of Aspergillus niger K10. The PCR product was ligated into expression vectors pET-30(+) and pRSET B to construct plasmids pOK101 and pOK102, respectively. The recombinant nitrilase (Nit-ANigRec) expressed in Escherichia coli BL21-Gold(DE3)(pOK101/pTf16) was purified with an about 2-fold increase in specific activity and 35% yield. The apparent subunit size was 42.7 kDa, which is approx. 4 kDa higher than that of the enzyme isolated from the native organism (Nit-ANigWT), indicating post-translational cleavage in the enzyme's native environment. Mass spectrometry analysis showed that a C-terminal peptide (Val(327 )- Asn(356)) was present in Nit-ANigRec but missing in Nit-ANigWT and Asp(298)-Val(313 )peptide was shortened to Asp(298)-Arg(310 )in Nit-ANigWT. The latter enzyme was thus truncated by 46 amino acids. Enzymes Nit-ANigRec and Nit-ANigWT differed in substrate specificity, acid/amide ratio, reaction optima and stability. Refolded recombinant enzyme stored for one month at 4°C was fractionated by gel filtration, and fractions were examined by electron microscopy. The late fractions were further analyzed by analytical centrifugation and dynamic light scattering, and shown to consist of a rather homogeneous protein species composed of 12-16 subunits. This hypothesis was consistent with electron microscopy and our modelling of the multimeric nitrilase, which supports an arrangement of dimers into helical segments as a plausible structural solution. CONCLUSIONS: The nitrilase from Aspergillus niger K10 is highly homologous (≥86%) with proteins deduced from gene sequencing in Aspergillus and Penicillium genera. As the first of these proteins, it was shown to exhibit nitrilase activity towards organic nitriles. The comparison of the Nit-ANigRec and Nit-ANigWT suggested that the catalytic properties of nitrilases may be changed due to missing posttranslational cleavage of the former enzyme. Nit-ANigRec exhibits a lower tendency to form filaments and, moreover, the sample homogeneity can be further improved by in vitro protein refolding. The homogeneous protein species consisting of short spirals is expected to be more suitable for structural studies. BioMed Central 2011-01-06 /pmc/articles/PMC3023689/ /pubmed/21210990 http://dx.doi.org/10.1186/1472-6750-11-2 Text en Copyright ©2011 Kaplan et al; licensee BioMed Central Ltd. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (<url>http://creativecommons.org/licenses/by/2.0</url>), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Kaplan, Ondřej
Bezouška, Karel
Plíhal, Ondřej
Ettrich, Rüdiger
Kulik, Natallia
Vaněk, Ondřej
Kavan, Daniel
Benada, Oldřich
Malandra, Anna
Šveda, Ondřej
Veselá, Alicja B
Rinágelová, Anna
Slámová, Kristýna
Cantarella, Maria
Felsberg, Jürgen
Dušková, Jarmila
Dohnálek, Jan
Kotik, Michael
Křen, Vladimír
Martínková, Ludmila
Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10
title Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10
title_full Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10
title_fullStr Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10
title_full_unstemmed Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10
title_short Heterologous expression, purification and characterization of nitrilase from Aspergillus niger K10
title_sort heterologous expression, purification and characterization of nitrilase from aspergillus niger k10
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3023689/
https://www.ncbi.nlm.nih.gov/pubmed/21210990
http://dx.doi.org/10.1186/1472-6750-11-2
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