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Pathogenesis II: fungal responses to host responses: interaction of host cells with fungi
M J Mendes-Giannini1, M L Taylor, J B Bouchara
1Faculdade de Ciências Farmacêuticas, Universidade Estadual Paulista, Araraquara, SP, Brazil. giannini@fcfar.unesp.br
Abstract:
Most of our knowledge concerning the virulence determinants of pathogenic fungi comes from the infected host, mainly from animal models and more recently from in vitro studies with cell cultures. The fungi usually present intra- and/or extracellular host-parasite interfaces, with the parasitism phenomenon dependent on complementary surface molecules. Among living organisms, this has been characterized as a cohabitation event, where the fungus is able to recognize specific host tissues acting as an attractant, creating stable conditions for its survival. Several fungi pathogenic for humans and animals have evolved special strategies to deliver elements to their cellular targets that may be relevant to their pathogenicity. Most of these pathogens express surface factors that mediate binding to host cells either directly or indirectly, in the latter case binding to host adhesion components such as extracellular matrix (ECM) proteins, which act as 'interlinking' molecules. The entry of the pathogen into the host cell is initiated by fungal adherence to the cell surface, which generates an uptake signal that may induce its cytoplasmic internalization. Once this is accomplished, some fungi are able to alter the host cytoskeletal architecture, as manifested by a rearrangement of microtubule and microfilament proteins, and this can also induce epithelial host cells to become apoptotic. It is possible that fungal pathogens induce modulation of different host cell pathways in order to evade host defences and to foster their own proliferation. For a number of pathogens, the ability to bind ECM glycoproteins, the capability of internalization and the induction of apoptosis are considered important factors in virulence. Furthermore, specific recognition between fungal parasites and their host cell targets may be mediated by the interaction of carbohydrate-binding proteins, e.g., lectins on the surface of one type of cell, probably a parasite, that combine with complementary sugars on the surface of host-cell. These interactions supply precise models to study putative adhesins and receptor-containing molecules in the context of the fungus-host interface. The recognition of the host molecules by fungi such as Aspergillus fumigatus, Paracoccidioides brasiliensis and Histoplasma capsulatum, and their molecular mechanisms of adhesion and invasion, are reviewed in this paper.
Insights
Pathogenic fungi use surface molecules to adhere to host cells, invade them, and alter host cell functions, contributing to virulence. Understanding these fungal adhesion and invasion mechanisms is key to combating fungal infections.
Area of Science:
- Mycology
- Pathogenesis
- Cell Biology
Background:
- Fungal virulence factors are studied in infected hosts and cell cultures.
- Fungi exhibit host-parasite interfaces involving surface molecule interactions.
- Fungi recognize and bind to specific host tissues for survival and proliferation.
Purpose of the Study:
- To review the molecular mechanisms of fungal adhesion and invasion.
- To explore how pathogenic fungi interact with host cells.
- To understand the role of surface molecules in fungal virulence.
Main Methods:
- Review of existing literature on fungal-host interactions.
- Analysis of fungal surface factors mediating adherence to host cells and extracellular matrix (ECM) proteins.
- Examination of fungal internalization mechanisms and host cytoskeletal alterations.
Main Results:
- Fungal pathogens utilize surface factors for direct or indirect binding to host cells.
- Adherence to host cells can trigger internalization and cytoskeletal rearrangements.
- Binding to ECM glycoproteins, internalization, and apoptosis induction are key virulence factors.
Conclusions:
- Fungal recognition of host molecules, like through lectin-carbohydrate interactions, is crucial for adhesion and invasion.
- Studying these interactions provides models for identifying fungal adhesins and host receptors.
- Mechanisms of adhesion and invasion by fungi like Aspergillus fumigatus, Paracoccidioides brasiliensis, and Histoplasma capsulatum are critical for pathogenesis.