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Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase

BACKGROUND: The β-galactosidase from Kluyveromyces lactis is a protein of outstanding biotechnological interest in the food industry and milk whey reutilization. However, due to its intracellular nature, its industrial production is limited by the high cost associated to extraction and downstream pr...

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Autores principales: Rodríguez, Ángel Pereira, Leiro, Rafael Fernández, Trillo, M Cristina, Cerdán, M Esperanza, Siso, M Isabel González, Becerra, Manuel
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1764428/
https://www.ncbi.nlm.nih.gov/pubmed/17176477
http://dx.doi.org/10.1186/1475-2859-5-41
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author Rodríguez, Ángel Pereira
Leiro, Rafael Fernández
Trillo, M Cristina
Cerdán, M Esperanza
Siso, M Isabel González
Becerra, Manuel
author_facet Rodríguez, Ángel Pereira
Leiro, Rafael Fernández
Trillo, M Cristina
Cerdán, M Esperanza
Siso, M Isabel González
Becerra, Manuel
author_sort Rodríguez, Ángel Pereira
collection PubMed
description BACKGROUND: The β-galactosidase from Kluyveromyces lactis is a protein of outstanding biotechnological interest in the food industry and milk whey reutilization. However, due to its intracellular nature, its industrial production is limited by the high cost associated to extraction and downstream processing. The yeast-system is an attractive method for producing many heterologous proteins. The addition of a secretory signal in the recombinant protein is the method of choice to sort it out of the cell, although biotechnological success is not guaranteed. The cell wall acting as a molecular sieve to large molecules, culture conditions and structural determinants present in the protein, all have a decisive role in the overall process. Protein engineering, combining domains of related proteins, is an alternative to take into account when the task is difficult. In this work, we have constructed and analyzed two hybrid proteins from the β-galactosidase of K. lactis, intracellular, and its Aspergillus niger homologue that is extracellular. In both, a heterologous signal peptide for secretion was also included at the N-terminus of the recombinant proteins. One of the hybrid proteins obtained has interesting properties for its biotechnological utilization. RESULTS: The highest levels of intracellular and extracellular β-galactosidase were obtained when the segment corresponding to the five domain of K. lactis β-galactosidase was replaced by the corresponding five domain of the A. niger β-galactosidase. Taking into account that this replacement may affect other parameters related to the activity or the stability of the hybrid protein, a thoroughly study was performed. Both pH (6.5) and temperature (40°C) for optimum activity differ from values obtained with the native proteins. The stability was higher than the corresponding to the β-galactosidase of K. lactis and, unlike this, the activity of the hybrid protein was increased by the presence of Ni(2+). The affinity for synthetic (ONPG) or natural (lactose) substrates was higher in the hybrid than in the native K. lactis β-galactosidase. Finally, a structural-model of the hybrid protein was obtained by homology modelling and the experimentally determined properties of the protein were discussed in relation to it. CONCLUSION: A hybrid protein between K. lactis and A. niger β-galactosidases was constructed that increases the yield of the protein released to the growth medium. Modifications introduced in the construction, besides to improve secretion, conferred to the protein biochemical characteristics of biotechnological interest.
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spelling pubmed-17644282007-01-06 Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase Rodríguez, Ángel Pereira Leiro, Rafael Fernández Trillo, M Cristina Cerdán, M Esperanza Siso, M Isabel González Becerra, Manuel Microb Cell Fact Research BACKGROUND: The β-galactosidase from Kluyveromyces lactis is a protein of outstanding biotechnological interest in the food industry and milk whey reutilization. However, due to its intracellular nature, its industrial production is limited by the high cost associated to extraction and downstream processing. The yeast-system is an attractive method for producing many heterologous proteins. The addition of a secretory signal in the recombinant protein is the method of choice to sort it out of the cell, although biotechnological success is not guaranteed. The cell wall acting as a molecular sieve to large molecules, culture conditions and structural determinants present in the protein, all have a decisive role in the overall process. Protein engineering, combining domains of related proteins, is an alternative to take into account when the task is difficult. In this work, we have constructed and analyzed two hybrid proteins from the β-galactosidase of K. lactis, intracellular, and its Aspergillus niger homologue that is extracellular. In both, a heterologous signal peptide for secretion was also included at the N-terminus of the recombinant proteins. One of the hybrid proteins obtained has interesting properties for its biotechnological utilization. RESULTS: The highest levels of intracellular and extracellular β-galactosidase were obtained when the segment corresponding to the five domain of K. lactis β-galactosidase was replaced by the corresponding five domain of the A. niger β-galactosidase. Taking into account that this replacement may affect other parameters related to the activity or the stability of the hybrid protein, a thoroughly study was performed. Both pH (6.5) and temperature (40°C) for optimum activity differ from values obtained with the native proteins. The stability was higher than the corresponding to the β-galactosidase of K. lactis and, unlike this, the activity of the hybrid protein was increased by the presence of Ni(2+). The affinity for synthetic (ONPG) or natural (lactose) substrates was higher in the hybrid than in the native K. lactis β-galactosidase. Finally, a structural-model of the hybrid protein was obtained by homology modelling and the experimentally determined properties of the protein were discussed in relation to it. CONCLUSION: A hybrid protein between K. lactis and A. niger β-galactosidases was constructed that increases the yield of the protein released to the growth medium. Modifications introduced in the construction, besides to improve secretion, conferred to the protein biochemical characteristics of biotechnological interest. BioMed Central 2006-12-18 /pmc/articles/PMC1764428/ /pubmed/17176477 http://dx.doi.org/10.1186/1475-2859-5-41 Text en Copyright © 2006 Rodríguez et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Rodríguez, Ángel Pereira
Leiro, Rafael Fernández
Trillo, M Cristina
Cerdán, M Esperanza
Siso, M Isabel González
Becerra, Manuel
Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase
title Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase
title_full Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase
title_fullStr Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase
title_full_unstemmed Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase
title_short Secretion and properties of a hybrid Kluyveromyces lactis-Aspergillus niger β-galactosidase
title_sort secretion and properties of a hybrid kluyveromyces lactis-aspergillus niger β-galactosidase
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1764428/
https://www.ncbi.nlm.nih.gov/pubmed/17176477
http://dx.doi.org/10.1186/1475-2859-5-41
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