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Expression and Immunostaining Analyses Suggest that Pneumocystis Primary Homothallism Involves Trophic Cells
A Luraschi1,2, S Richard1,2, J M G C F Almeida3
1Institute of Microbiology, University of Lausanne, Lausanne, Switzerland.
Abstract:
The genus Pneumocystis encompasses fungal species that colonize mammals' lungs with host specificity. Should the host immune system weaken, the fungal species can cause severe pneumonia. The life cycle of these pathogens is poorly known, mainly because an in vitro culture method has not been established. Both asexual and sexual cycles would occur. Trophic cells, the predominant forms during infection, could multiply asexually but also enter into a sexual cycle. Comparative genomics revealed a single mating type locus, including plus and minus genes, suggesting that primary homothallism involving self-fertility of each strain is the mode of reproduction of Pneumocystis species. We identified and analyzed the expression of the mam2 and map3 genes encoding the receptors for plus and minus pheromones using reverse transcriptase PCR, in both infected mice and bronchoalveolar lavage fluid samples from patients with Pneumocystis pneumonia. Both receptors were most often concomitantly expressed during infection, revealing that both pheromone-receptor systems are involved in the sexual cycle. The map3 transcripts were subject to alternative splicing. Using immunostaining, we investigated the presence of the pheromone receptors at the surfaces of Pneumocystis cells from a patient. The staining tools were first assessed in Saccharomyces cerevisiae displaying the Pneumocystis receptors at their cellular surface. Both receptors were present at the surfaces of the vast majority of the cells that were likely trophic forms. The receptors might have a role in mate recognition and/or postfertilization events. Their presence at the cell surface might facilitate outbreeding versus inbreeding of self-fertile strains.IMPORTANCE The fungi belonging to the genus Pneumocystis may cause severe pneumonia in immunocompromised humans, a disease that can be fatal if not treated. This disease is nowadays one of the most frequent invasive fungal infections worldwide. Whole-genome sequencing revealed that the sexuality of these fungi involves a single partner that can self-fertilize. Here, we report that two receptors recognizing specifically excreted pheromones are involved in this self-fertility within infected human lungs. Using fluorescent antibodies binding specifically to these receptors, we observed that most often, the fungal cells display both receptors at their surface. These pheromone-receptor systems might play a role in mate recognition and/or postfertilization events. They constitute an integral part of the Pneumocystis obligate sexuality within human lungs, a cycle that is necessary for the dissemination of the fungus to new individuals.
Insights
Pneumocystis fungi cause severe pneumonia in immunocompromised individuals. This study identifies two cell-surface receptors crucial for Pneumocystis sexual reproduction and self-fertility in infected lungs.
Area of Science:
- Medical Mycology
- Fungal Pathogenesis
- Infectious Diseases
Background:
- Pneumocystis species cause severe pneumonia in immunocompromised hosts.
- The life cycle and reproductive strategies of Pneumocystis remain poorly understood due to challenges in in vitro cultivation.
- Comparative genomics suggests primary homothallism (self-fertility) as the reproductive mode.
Purpose of the Study:
- To investigate the role of pheromone receptors in the sexual cycle of Pneumocystis.
- To analyze the expression and localization of mam2 and map3 genes, encoding plus and minus pheromone receptors.
- To understand the contribution of these receptors to Pneumocystis self-fertility and potential outbreeding.
Main Methods:
- Reverse transcriptase PCR to analyze gene expression in infected mice and human samples.
- Immunostaining using fluorescent antibodies to detect receptor presence on Pneumocystis cells.
- Validation of staining tools in Saccharomyces cerevisiae expressing Pneumocystis receptors.
Main Results:
- Both mam2 and map3 receptors were concomitantly expressed during infection, indicating their involvement in the sexual cycle.
- The map3 receptor transcripts were found to undergo alternative splicing.
- Immunostaining revealed the presence of both pheromone receptors on the surfaces of the majority of Pneumocystis trophic cells in patient samples.
Conclusions:
- The identified pheromone-receptor systems are integral to Pneumocystis self-fertility and obligate sexuality within human lungs.
- These receptors likely play a role in mate recognition and/or postfertilization events, potentially facilitating outbreeding.
- Understanding these mechanisms is crucial for controlling Pneumocystis pneumonia, a significant opportunistic infection.
Related Concept Videos
Trophic Levels
Trophic Efficiency
Internal Receptors
Types of Receptors: Cell Surface Receptors
Cell Specific Gene Expression
Cell Specific Gene Expression

