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The project is aimed at characterizing the secretome of a human opportunistic fungal pathogen Candida glabrata. Additionally, the effect of loss of a family of eleven aspartyl proteases (Cg Yapsins) on the Candida glabrata secretome is studied.
ORGANISM(S): Candida glabrata (Yeast) (Torulopsis glabrata) 
2019-10-25 | PXD015131 | Pride
The project is aimed at characterizing the effect of deletion of surface associated aspartyl protease(s) on the secretome of of the human opportunistic fungal pathogen Candida glabrata.
ORGANISM(S): Candida glabrata (Yeast) (Torulopsis glabrata) 
2019-10-24 | PXD015132 | Pride
Xylanolytic enzyme systems in ascomycetous yeasts remain underexplored, despite the presence of yeasts in various xylan-rich ecological niches. In this study, we investigated the secreted xylanolytic machineries of three Blastobotrys species—B. mokoenaii, B. illinoisensis, and B. malaysiensis—by int...
ORGANISM(S): Blastobotrys 
2025-08-25 | PXD061695 | Pride
We performed gene expression microarray experiments to compare the global transcriptional response induced by b-glucans and LPS with their secretomes. We identified 1683, 767 and 1447 genes with over two-fold increase or decrease in LPS-, curdlan- or GBY-stimulated macrophages, respectively. We show...
ORGANISM(S): Homo sapiens 
Metabolically quiescent pathogens can persist in a viable non-replicating state for months or even years. In specific infectious diseases, such as tuberculosis, cryptococcosis, histoplasmosis, latent infection is a corollary of this dormant state, with at some point a phase of reactivation, leading...
ORGANISM(S): Cryptococcus neoformans 
2019-08-08 | PXD012570 | Pride
Analyzing culture supernatants of yeast and hyphal cells of Candida albicans by mass spectrometry, we found two close homologues of pathogenesis-related (PR-) 1 proteins, Rbe1p and Rbt4p, in the secretome of this human pathogen. By sequence homology, we assigned three yet not characterized open read...
ORGANISM(S): Candida albicans 
The bacterium Serratia marcescens is a common contaminant of contact lens cases and lenses. Serratamolide is one of the secreted hemolytic/cytotoxic factors which contribute to the virulence of this opportunistic pathogen (PMID 22615766). A newly identified transcription factor (eepR) is essential ...
ORGANISM(S): Homo sapiens 
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