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In this study the transcriptional response of an ExPEC E. coli strain (CFT073) to human serum was investigated. In response, CFT073 up-regulated expression of iron and manganese acquisition systems and induced expression of iron regulated genes. High osmolarity of serum induced the osmotic shock res...
ORGANISM(S): Escherichia coli 
Analysis of the interaction of Candida dubliniensis protein Tlo1p with DNA by ChIP-chip HA-tagged Tlo1p in Candida dubliniensis was used to identify Tlo1 interacting regions of DNA in global ChIP-chip analysis Experiment was carried out on cells grown at 30M-KM-^ZC in YEPD broth
ORGANISM(S): Candida dubliniensis 
Transcriptional response of Candida dubliniensis during hypha formation and environmental change (temperature, pH, density and nutrients). Transcript profiling of C. dubliniensis identified a core shared transcriptional response with C. albicans during hypha formation and growth at alkaline pH. Howe...
ORGANISM(S): Candida dubliniensis 
Analysis of the role of the Candida dubliniensis Telomeric (TLO) genes and MED3, encoding subunits of Mediator, in regulating transcription The transcriptional response of a Candida dubliniensis TLO1/TLO2 double (null) mutant was analysed. Reintegrant strains harboring TLO1 or TLO2 were compared to ...
ORGANISM(S): Candida dubliniensis 
Candida albicans and Candida dubliniensis are closely related species displaying differences in virulence and genome content, therefore providing potential opportunities to identify novel C. albicans virulence genes. C. albicans gene arrays were used for comparative analysis of global gene expressio...
ORGANISM(S): Candida dubliniensis 
In order to investigate the biology of chlamydospores, we compared global gene expression in C. dubliniensis yeast cells and chlamydospores. This revealed that 11% of the genes greater than 2-fold upregulated in chlamydospores were genes regulated by the transcriptional repressor Nrg1. These mainly...
ORGANISM(S): Candida dubliniensis 
Candida albicans and Candida dubliniensis are closely related species displaying differences in virulence and genome content, therefore providing potential opportunities to identify novel C. albicans virulence genes. C. albicans gene arrays were used for comparative analysis of global gene expressio...
ORGANISM(S): Candida albicans 
The opportunistic human pathogens, Candida albicans and Candida dubliniensis, are closely related species displaying large differences in virulence, but the reasons for these differences are elusive. Microarray-based comparative analysis of global gene expression in the two species incubated on reco...
ORGANISM(S): Candida albicans 
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