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Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 10, 2014
Identification and isolation by DDRT-PCR of genes differentially expressed by Histoplasma capsulatum during
S Colonna-Romano1, A Porta, A Franco
1International Institute of Genetics and Biophysics, CNR Via Marconi 12, Naples, 80125, Italy.
Abstract:
Establishment of infection and disease implies modifications in the genetic programmes of the cell systems that are involved and the differential expression of genes in both parasite and host. In order to identify and isolate relevant genes of the fungus, Histoplasma capsulatum, in which expression is specifically induced during its interaction with murine macrophages (Mphi), we performed a comparative analysis of the pattern of gene expression of the fungus before and after exposure to, and internalization into Mphi by using differential display reverse transcriptase-PCR (DDRT-PCR). Using a limited set of primer combinations, six cDNA fragments of H. capsulatum were identified and isolated; five representing fungal genes in which expressions were enhanced during Mphi infection, whereas one mRNA fragment was down-regulated. Slot blots followed by Northern blot analyses confirmed that the transcripts detected with cDNA clones were over expressed after 1 h of Mphi infection, whereas no transcripts were detected with mRNA purified from H. capsulatum before infection. Sequence analyses and database searches revealed no significant homology to any known sequence for five of these clones. One of the clones showed homology to the rat p105 kD protein, and to the p100 kD co-activator proteins of human and Caenorhabditis elegans. To our knowledge, this is the first experimental evidence that specific genes are differentially expressed by a fungal pathogen when it is exposed to, and phagocytosed by Mphi. Furthermore, these results show that the DDRT-PCR procedure has adequate sensitivity to detect fungal genes induced during parasite-host interaction to identify potential new targets that can be used to develop new antifungal drugs.
Insights
Researchers identified specific fungal genes in Histoplasma capsulatum that are activated during macrophage infection. This discovery offers potential new targets for developing novel antifungal drugs.
Area of Science:
- Mycology
- Molecular Biology
- Immunology
Background:
- Infection involves genetic program alterations in both host and pathogen.
- Histoplasma capsulatum (H. capsulatum) interaction with macrophages (Mphi) triggers gene expression changes.
Purpose of the Study:
- To identify and isolate H. capsulatum genes specifically induced during Mphi interaction.
- To investigate differential gene expression during fungal-host cell engagement.
Main Methods:
- Differential display reverse transcriptase-PCR (DDRT-PCR) was employed for comparative gene expression analysis.
- Slot blot and Northern blot analyses confirmed gene expression changes.
- Sequence analysis and database searches were performed on isolated cDNA fragments.
Main Results:
- Six differentially expressed cDNA fragments of H. capsulatum were identified.
- Five fragments represented genes with enhanced expression, and one showed down-regulated expression during Mphi infection.
- Four of the identified genes showed no homology to known sequences, suggesting novel fungal genes.
Conclusions:
- This study provides the first evidence of specific gene differential expression in H. capsulatum during Mphi phagocytosis.
- DDRT-PCR is a sensitive method for detecting pathogen genes induced during host-parasite interactions.
- Identified genes represent potential targets for new antifungal drug development.
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