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Published on: February 7, 2013
Interacting with Hemoglobin: Paracoccidioides spp. Recruits hsp30 on Its Cell Surface for Enhanced Ability to Use
Aparecido Ferreira de Souza1, Mariana Vieira Tomazett1, Kleber Santiago Freitas E Silva1
1Laboratório de Biologia Molecular, Instituto de Ciências Biológicas, ICB II, Campus II, Universidade Federal de Goiás, Goiânia 74000-000, Brazil.
Abstract:
Paracoccidioides spp. are thermally dimorphic fungi that cause paracoccidioidomycosis and can affect both immunocompetent and immunocompromised individuals. The infection can lead to moderate or severe illness and death. Paracoccidioides spp. undergo micronutrients deprivation within the host, including iron. To overcome such cellular stress, this genus of fungi responds in multiple ways, such as the utilization of hemoglobin. A glycosylphosphatidylinositol (GPI)-anchored fungal receptor, Rbt5, has the primary role of acquiring the essential nutrient iron from hemoglobin. Conversely, it is not clear if additional proteins participate in the process of using hemoglobin by the fungus. Therefore, in order to investigate changes in the proteomic level of P. lutzii cell wall, we deprived the fungus of iron and then treated those cells with hemoglobin. Deprived iron cells were used as control. Next, we performed cell wall fractionation and the obtained proteins were submitted to nanoUPLC-MSE. Protein expression levels of the cell wall F1 fraction of cells exposed to hemoglobin were compared with the protein expression of the cell wall F1 fraction of iron-deprived cells. Our results showed that P. lutzii exposure to hemoglobin increased the level of adhesins expression by the fungus, according to the proteomic data. We confirmed that the exposure of the fungus to hemoglobin increased its ability to adhere to macrophages by flow cytometry. In addition, we found that HSP30 of P. lutzii is a novel hemoglobin-binding protein and a possible heme oxygenase. In order to investigate the importance of HSP30 in the Paracoccidioides genus, we developed a Paracoccidioides brasiliensis knockdown strain of HSP30 via Agrobacterium tumefaciens-mediated transformation and demonstrated that silencing this gene decreases the ability of P. brasiliensis to use hemoglobin as a nutrient source. Additional studies are needed to establish HSP30 as a virulence factor, which can support the development of new therapeutic and/or diagnostic approaches.
Insights
Paracoccidioides fungi utilize hemoglobin for iron, with HSP30 identified as a key protein. Silencing HSP30 reduces hemoglobin utilization, suggesting its role in fungal nutrient acquisition and potential virulence.
Area of Science:
- Medical Mycology
- Fungal Pathogenesis
- Proteomics
Background:
- Paracoccidioides spp. are thermally dimorphic fungi causing paracoccidioidomycosis.
- Fungi, including Paracoccidioides, face nutrient deprivation, particularly iron, within the host.
- Hemoglobin utilization is a known strategy for fungi to acquire iron.
Purpose of the Study:
- To investigate the proteomic changes in the cell wall of P. lutzii upon hemoglobin exposure.
- To identify additional proteins involved in hemoglobin utilization beyond the known Rbt5 receptor.
- To explore the role of HSP30 in Paracoccidioides spp. nutrient acquisition and potential virulence.
Main Methods:
- Iron-deprived P. lutzii cells were treated with hemoglobin, with iron-deprived cells as control.
- Cell wall fractionation followed by nanoUPLC-MS(E) was performed to analyze protein expression.
- Flow cytometry was used to assess fungal adhesion to macrophages.
- A Paracoccidioides brasiliensis knockdown strain of HSP30 was generated using Agrobacterium tumefaciens.
Main Results:
- Hemoglobin exposure increased adhesin expression in P. lutzii cell walls.
- Fungal adhesion to macrophages was enhanced upon hemoglobin treatment.
- HSP30 was identified as a novel hemoglobin-binding protein and potential heme oxygenase.
- Silencing HSP30 in P. brasiliensis reduced its ability to utilize hemoglobin.
Conclusions:
- P. lutzii upregulates adhesins and enhances macrophage adhesion when exposed to hemoglobin.
- HSP30 is a novel hemoglobin-binding protein crucial for hemoglobin utilization in Paracoccidioides.
- HSP30 is a potential virulence factor, warranting further investigation for therapeutic and diagnostic applications.
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