Title
Effect of culture temperature on the heterologous expression of Pleurotus eryngii versatile peroxidase in Aspergillus hosts
Date Issued
01 January 2009
Access level
open access
Resource Type
journal article
Author(s)
Eibes G.M.
Ruiz-Dueñas F.J.
Feijoo G.
Martínez M.J.
Martínez A.T.
Lema J.M.
Universidad de Santiago de Compostela
Abstract
Production of recombinant versatile peroxidase in Aspergillus hosts was optimized through the modification of temperature during bioreactor cultivations. To further this purpose, the cDNA encoding a versatile peroxidase of Pleurotus eryngii was expressed under control of the alcohol dehydrogenase (alcA) promoter of Aspergillus nidulans. A dependence of recombinant peroxidase production on cultivation temperature was found. Lowering the culture temperature from 28 to 19°C enhanced the level of active peroxidase 5.8-fold and reduced the effective proteolytic activity twofold. Thus, a maximum peroxidase activity of 466 U L-1 was reached. The same optimization scheme was applied to a recombinant Aspergillus niger that bore the alcohol dehydrogenase regulator (alcR), enabling transformation with the peroxidase cDNA under the same alcA promoter. However, with this strain, the peroxidase activity was not improved, while the effective proteolytic activity was increased between 3- and 11-fold compared to that obtained with A. nidulans. © 2008 Springer-Verlag.
Start page
129
End page
134
Volume
32
Issue
1
Language
English
OCDE Knowledge area
Ingeniería química
Subjects
Scopus EID
2-s2.0-58149102783
PubMed ID
Source
Bioprocess and Biosystems Engineering
ISSN of the container
16157591
Source funding
Comunidad de Madrid
Sponsor(s)
Acknowledgments The authors thank M. A. Peñalva (CIB, CSIC, Madrid) for providing the A. nidulans strain and the plasmid palcA, B. Felenbock (University of Orsay, Paris) for the recombinant A. niger strain containing the alcA regulator, and P. J. Punt (TNO Voeding, Zeist, The Netherlands) for the PN7 vector. This work was partially supported by the EU contract ‘‘Fungal metalloenzymes oxidizing aromatic compounds of industrial interest’’ (QLK3-99-590), the Comunidad de Madrid, and the Spanish Commission of Science and Technology (BIO98-610 and BIO99-908).
Sources of information:
Directorio de Producción Científica
Scopus