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Interplay between host humoral pattern recognition molecules controls undue immune responses against Aspergillus
Sarah Dellière1,2,3, Camille Chauvin4, Sarah Sze Wah Wong1,5
1Institut Pasteur, Université Paris Cité, CNRS UMR2000, Unité Mycologie Moléculaire, Paris, France.
Abstract:
Pentraxin 3 (PTX3), a long pentraxin and a humoral pattern recognition molecule (PRM), has been demonstrated to be protective against Aspergillus fumigatus, an airborne human fungal pathogen. We explored its mode of interaction with A. fumigatus, and the resulting implications in the host immune response. Here, we demonstrate that PTX3 interacts with A. fumigatus in a morphotype-dependent manner: (a) it recognizes germinating conidia through galactosaminogalactan, a surface exposed cell wall polysaccharide of A. fumigatus, (b) in dormant conidia, surface proteins serve as weak PTX3 ligands, and (c) surfactant protein D (SP-D) and the complement proteins C1q and C3b, the other humoral PRMs, enhance the interaction of PTX3 with dormant conidia. SP-D, C3b or C1q opsonized conidia stimulated human primary immune cells to release pro-inflammatory cytokines and chemokines. However, subsequent binding of PTX3 to SP-D, C1q or C3b opsonized conidia significantly decreased the production of pro-inflammatory cytokines/chemokines. PTX3 opsonized germinating conidia also significantly lowered the production of pro-inflammatory cytokines/chemokines while increasing IL-10 (an anti-inflammatory cytokine) released by immune cells when compared to the unopsonized counterpart. Overall, our study demonstrates that PTX3 recognizes A. fumigatus either directly or by interplaying with other humoral PRMs, thereby restraining detrimental inflammation. Moreover, PTX3 levels were significantly higher in the serum of patients with invasive pulmonary aspergillosis (IPA) and COVID-19-associated pulmonary aspergillosis (CAPA), supporting previous observations in IPA patients, and suggesting that it could be a potential panel-biomarker for these pathological conditions caused by A. fumigatus.
Insights
Pentraxin 3 (PTX3) interacts with Aspergillus fumigatus, modulating immune responses. This molecule may serve as a biomarker for invasive pulmonary aspergillosis and COVID-19-associated pulmonary aspergillosis.
Area of Science:
- Immunology
- Microbiology
- Biochemistry
Background:
- Pentraxin 3 (PTX3) is a long pentraxin and humoral pattern recognition molecule.
- PTX3 has shown protective effects against Aspergillus fumigatus infections.
Purpose of the Study:
- To elucidate the interaction mechanism between PTX3 and Aspergillus fumigatus.
- To understand the implications of this interaction on host immune responses.
- To evaluate PTX3 as a potential biomarker for invasive aspergillosis.
Main Methods:
- Investigated PTX3 interaction with different Aspergillus fumigatus morphotypes (germinating and dormant conidia).
- Assessed the role of galactosaminogalactan and surface proteins in PTX3 recognition.
- Examined the influence of other humoral pattern recognition molecules (SP-D, C1q, C3b) on PTX3 binding.
- Measured cytokine and chemokine production by human immune cells upon exposure to opsonized and non-opsonized conidia.
Main Results:
- PTX3 recognizes germinating conidia via galactosaminogalactan and dormant conidia through surface proteins, with enhanced binding by SP-D, C1q, and C3b.
- PTX3 binding to opsonized conidia significantly reduced pro-inflammatory cytokine and chemokine release.
- PTX3 opsonization of germinating conidia increased IL-10 production.
- Elevated PTX3 levels were observed in patients with invasive pulmonary aspergillosis (IPA) and COVID-19-associated pulmonary aspergillosis (CAPA).
Conclusions:
- PTX3 interacts with Aspergillus fumigatus directly or via other humoral PRMs, restraining detrimental inflammation.
- PTX3 plays a crucial role in modulating the immune response to fungal infections.
- PTX3 shows potential as a panel biomarker for IPA and CAPA.
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