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The human pathogen Aspergillus (A.) fumigatus is a fungal mold that can cause severe infections in immunocompromised hosts. Pathogen recognition and immune cell cross-talk are essential for clearing fungal infections efficiently. Immune cell interactions in particular may enhance individual cell activation and cytotoxicity towards invading pathogens.
This study analyzed the reciprocal cell activation of natural killer (NK) cells and monocyte-derived dendritic cells (moDCs) after stimulation with A. fumigatus cell wall fractions and whole-cell lysates. Furthermore, the impact of the on moDCs expressed fungal receptors Dectin-1 and TLR-2 on NK cell activation was analyzed. Stimulation of moDCs with ligands for Dectin-1 and TLR-2 and transfer of soluble factors on autologous NK cells showed that moDCs could induce NK cell activation solely by secreting factors. In summary, both cell types could induce reciprocal cell activation if the stimulated cell type recognized fungal morphologies and ligands. However, moDCs displayed a broader set of A. fumigatus receptors and, therefore, could induce NK cell activation when those were not activated by the stimulus directly.
Consequently, new fungal receptors should be identified on NK cells. The NK cell characterization marker CD56 was reduced detected in flow cytometry after fungal co-culture. Notably, this decreased detection was not associated with NK cell apoptosis, protein degradation, internalization, or secretion of CD56 molecules. CD56 was shown to tightly attach to hyphal structures, followed by its concentration at the NK-A. fumigatus interaction site. Actin polymerization was necessary for CD56 relocalization, as pre-treatment of NK cells with actin-inhibitory reagents abolished CD56 binding to the fungus. Blocking of CD56 suppressed fungal mediated NK cell activation and secretion of the immune-recruiting chemokines MIP-1α, MIP-1β, and RANTES, concluding that CD56 is functionally involved in fungal recognition by NK cells.
CD56 binding to fungal hyphae was inhibited in NK cells obtained from patients during immune-suppressing therapy after allogeneic stem cell transplantation (alloSCT). Additionally, reduced binding of CD56 correlated with decreased actin polymerization of reconstituting NK cells challenged with the fungus. The immune-suppressing therapy with corticosteroids negatively influenced the secretion of MIP-1α, MIP-1β, and RANTES in NK cells after fungal stimulation ex vivo. Similar results were obtained when NK cells from healthy donors were treated with corticosteroids prior to fungal co-culture. Thus, corticosteroids were identified to have detrimental effects on NK cell function during infection with A. fumigatus.
Einfluss von Hypoxie auf die Interaktion von moDCs und T-Zellen mit \(Aspergillus\) \(fumigatus\)
(2021)
Die invasive Aspergillose ist eine gefürchtete Erkrankung besonderes bei immunsupprimierten Patienten, die eine Stammzelltransplanation erhalten sollen. Diese Patienten leiden in der Regel an einer hämatologischen Grunderkrankung wie einer Leukämie oder einem Lymphom. Das Prinzip der Stammzelltransplanatation ist es, das kranke Knochenmark mittels Chemotherapie und Bestrahlung zu zerstören und es dann mit gesunden Stammzellen zu ersetzen. Während dieser Konditionierung ist der Patient also ohne eigene Abwehrzellen. In dieser Phase gestaltet sich die rechtzeitige Diagnose häufig als schwierig, weil die konventionellen Diagnosemethoden von der Anwesenheit von neutrophilen Granulozyten abhängen. Häufig ist die Infektion bei der Entwicklung von unspezifischen Symptomen wie Fieber oder Dyspnoe schon weit fortgeschritten. Hat sich der Pilz in der Lunge ausgebreitet, so kommt es zur Ausbildung einer Hypoxie und im Verlauf auch zu einer Hypoxämie aufgrund einer Diffusionsstörung in den entzündeten Lungenabschnitten.
Ziel dieser Arbeit war es, den Einfluss von Hypoxie auf die Interaktion zwischen dendritischen Zellen und T-Zellen besser zu verstehen. Dendritische Zellen spielen eine entscheidende Rolle bei der Immunabwehr von Pilzinfektion und bilden das Verbindungsstück zwischen angeborenen und erworbenen Immunsystem. T-Zellen übernehmen ebenfalls wichtige Aufgaben bei der Abwehr von Pilzinfektionen, indem sie Interferon gamma produzieren. Zudem sollte die Funktion verschiedener Botenstoffe in Signalkaskaden näher untersucht werden.
Es konnte gezeigt werden, dass die Infektion von dendritischen Zellen mit Aspergillus fumigatus unter Hypoxie, die dendritischen Zellen anschließend unter Normoxie dazu befähigt, eine verstärkte adaptive Immunantwort hervorzurufen. Hypoxie könnte somit als zusätzlicher Faktor verwendet werden, um dendritische Zellen als effektive Adjuvantien in einer Impfung gegen Aspergillus fumigatus zu verwenden. Ursächlich für die verstärkte Fähigkeit naive T-Zellen zu aktivieren, scheint zum einen die Apoptose und zum anderen eine verstärkte Produktion von Interleukin 12p70 zu sein.
Aspergillus is an important fungal genus containing economically important species, as well as pathogenic species of animals and plants. Using eighteen fungal species of the genus Aspergillus, we conducted a comprehensive investigation of conserved genes and their evolution. This also allows us to investigate the selection pressure driving the adaptive evolution in the pathogenic species A. fumigatus. Among single-copy orthologs (SCOs) for A. fumigatus and the closely related species A. fischeri, we identified 122 versus 50 positively selected genes (PSGs), respectively. Moreover, twenty conserved genes of unknown function were established to be positively selected and thus important for adaption. A. fumigatus PSGs interacting with human host proteins show over-representation of adaptive, symbiosis-related, immunomodulatory and virulence-related pathways, such as the TGF-β pathway, insulin receptor signaling, IL1 pathway and interfering with phagosomal GTPase signaling. Additionally, among the virulence factor coding genes, secretory and membrane protein-coding genes in multi-copy gene families, 212 genes underwent positive selection and also suggest increased adaptation, such as fungal immune evasion mechanisms (aspf2), siderophore biosynthesis (sidD), fumarylalanine production (sidE), stress tolerance (atfA) and thermotolerance (sodA). These genes presumably contribute to host adaptation strategies. Genes for the biosynthesis of gliotoxin are shared among all the close relatives of A. fumigatus as an ancient defense mechanism. Positive selection plays a crucial role in the adaptive evolution of A. fumigatus. The genome-wide profile of PSGs provides valuable targets for further research on the mechanisms of immune evasion, antimycotic targeting and understanding fundamental virulence processes.