Secretion of an endogenous subtilisin by Pichia pastoris strains GS115 and KM71.

Details

Serval ID
serval:BIB_763127A9655D
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Secretion of an endogenous subtilisin by Pichia pastoris strains GS115 and KM71.
Journal
Applied and Environmental Microbiology
Author(s)
Salamin Karine, Sriranganadane Dev, Lechenne Barbara, Jousson Olivier, Monod Michel
ISSN
1098-5336[electronic], 0099-2240[linking]
Publication state
Published
Issued date
2010
Volume
76
Number
13
Pages
4269-4276
Language
english
Abstract
The methylotrophic yeast Pichia pastoris is widely used for the expression of heterologous enzymes. While the purity of the desired expression product is of major importance for many applications, we found that recombinant enzymes produced in methanol medium were contaminated by a 37-kDa endogenous yeast protease. This enzyme was completely inhibited by phenylmethanesulfonyl fluoride (PMSF) but not by 1,10-phenanthroline, EDTA, and pepstatin A, suggesting the nature of a serine protease. Its secretion was abolished in P. pastoris strains GS115 and KM71 by specific mutagenesis of a subtilisin gene (SUB2) but not by inactivation of the gene encoding vacuolar proteinase B (PRB). Bioinformatic comparisons of Sub2 protein with subtilisins from other fungal genomes and phylogenetic analyses indicated that this enzyme is not an orthologue of the vacuolar protease cerevisin generally present in yeasts but is more closely related to another putative subtilisin found in a small number of yeast genomes. During growth of P. pastoris, Sub2 was produced as a secreted enzyme at a concentration of 10 microg/ml of culture supernatant after overexpression of the full-length SUB2 gene. During fermentative production of recombinant enzymes in methanol medium, 1 ml of P. pastoris culture supernatant was found to contain approximately 3 ng of Sub2, while the enzyme was not detected during growth in a medium containing glycerol as a carbon source. The mutant strain GS115-sub2 was subsequently used as a host for the production of recombinant proteases without endogenous subtilisin contamination.
Keywords
Aspergillus-Fumigatus, Trichophyton-Rubrum, Candida-Albicans, Alcohol Oxidase, Aspartic Proteinases, Polyacrylamide-Gels, Genes, Yeast, Purification, Algorithm
Pubmed
Web of science
Open Access
Yes
Create date
13/07/2010 9:06
Last modification date
20/08/2019 15:33
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