Affiliation:
1. VTT Biotechnology, Espoo, Finland
Abstract
ABSTRACT
One strategy to obtain better yields of secreted proteins has been overexpression of single endoplasmic reticulum-resident foldases or chaperones. We report here that manipulation of the unfolded-protein response (UPR) pathway regulator,
HAC1
, affects production of both native and foreign proteins in the yeast
Saccharomyces cerevisiae
. The effects of
HAC1
deletion and overexpression on the production of a native protein, invertase, and two foreign proteins,
Bacillus amyloliquefaciens
α-amylase and
Trichoderma reesei
endoglucanase EGI, were studied. Disruption of
HAC1
caused decreases in the secretion of both α-amylase (70 to 75% reduction) and EGI (40 to 50% reduction) compared to the secretion by the parental strain. Constitutive overexpression of
HAC1
caused a 70% increase in α-amylase secretion but had no effect on EGI secretion. The invertase levels were twofold higher in the strain overexpressing
HAC1
. Also, the effect of the active form of
T. reesei hac1
was tested in
S. cerevisiae
.
hac1
expression caused a 2.4-fold increase in the secretion of α-amylase in
S. cerevisiae
and also slight increases in invertase and total protein production. Overexpression of both
S. cerevisiae HAC1
and
T. reesei hac1
caused an increase in the expression of the known UPR target gene
KAR2
at early time points during cultivation.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
160 articles.
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