Affiliation:
1. Aberdeen Fungal Group, School of Medical Sciences, Institute of Medical Sciences, Aberdeen AB25 2ZD, United Kingdom
Abstract
ABSTRACT
Uridine auxotrophy, based on disruption of both
URA3
alleles in diploid
Candida albicans
strain SC5314, has been widely used to select gene deletion mutants created in this fungus by “Ura-blasting” and PCR-mediated disruption. We compared wild-type
URA3
expression with levels in mutant strains where
URA3
was positioned either within deleted genes or at the highly expressed
RPS10
locus.
URA3
expression levels differed significantly and correlated with the specific activity of Ura3p, orotidine 5′-monophosphate decarboxylase. Reduced
URA3
expression following integration at the
GCN4
locus was associated with an attenuation of virulence. Furthermore, a comparison of the SC5314 (
URA3
) and CAI-4 (
ura3
) proteomes revealed that inactivation of
URA3
caused significant changes in the levels of 14 other proteins. The protein levels of all except one were partially or fully restored by the reintegration of a single copy of
URA3
at the
RPS10
locus. Transcript levels of genes expressed ectopically at this locus in reconstituted heterozygous mutants also matched the levels found when the genes were expressed at their native loci. Therefore, phenotypic changes in
C. albicans
can be associated with the selectable marker rather than the target gene. Reintegration of
URA3
at an appropriate expression locus such as
RPS10
can offset most problems related to the phenotypic changes associated with gene knockout methodologies.
Publisher
American Society for Microbiology
Subject
Molecular Biology,General Medicine,Microbiology
Cited by
251 articles.
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