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Probing the yeast phase-specific expression of the CBP1 gene in Histoplasma capsulatum
J B Patel1, J W Batanghari, W E Goldman
1Department of Molecular Microbiology, Washington University, St. Louis, Missouri 63110, USA.
Abstract:
Histoplasma capsulatum is a pathogenic fungus that exists in two distinct forms. The saprophytic mycelial phase inhabits moist soil environments; once inhaled, hyphae and conidia convert to a unicellular yeast phase that is capable of parasitizing macrophage phagolysosomes. Yeasts cultures, but not mycelial cultures, release large quantities of a calcium-binding protein (CBP) which may be important in calcium acquisition during intracellular parasitism. In this study, we show that the gene encoding CBP (CBP1) is transcriptionally regulated. To identify promoter sequences that are important for yeast phase-specific activity, we created a series of fusions between successively truncated CBP1 5' untranslated regulatory sequences and the Escherichia coli lacZ gene. The fusions were constructed on a telomeric shuttle plasmid that can replicate autonomously in the fungus. By assaying for beta-galactosidase activity from H. capsulatum transformants, we identified a 102-bp region that mediates promoter activation and yeast phase promoter activity. Base pair substitution analysis suggests that the sequences between 839 and 877 bp upstream of the start codon are the most important for this positive regulation.
Insights
Histoplasma capsulatum yeast cultures release calcium-binding protein (CBP). A 102-bp promoter region of the CBP1 gene is crucial for yeast-specific gene expression, aiding fungal survival.
Area of Science:
- Medical Mycology
- Molecular Biology
- Fungal Pathogenesis
Background:
- Histoplasma capsulatum exists as mycelial and yeast forms.
- The yeast form, parasitic within macrophages, releases calcium-binding protein (CBP).
- CBP may facilitate calcium acquisition during intracellular parasitism.
Purpose of the Study:
- To investigate the transcriptional regulation of the CBP1 gene.
- To identify promoter sequences responsible for yeast phase-specific CBP expression.
Main Methods:
- Constructed gene fusions of truncated CBP1 5' regulatory sequences with the Escherichia coli lacZ gene.
- Utilized a telomeric shuttle plasmid for autonomous replication in H. capsulatum.
- Assayed beta-galactosidase activity in H. capsulatum transformants.
Main Results:
- Identified a 102-bp region mediating promoter activation and yeast phase activity.
- Base pair substitution analysis pinpointed sequences 839-877 bp upstream of the start codon as critical.
- Demonstrated yeast phase-specific transcriptional regulation of CBP1.
Conclusions:
- A specific promoter region regulates CBP1 expression in the yeast phase of Histoplasma capsulatum.
- This regulation is vital for yeast-specific gene expression and potentially for fungal virulence.