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Assessing Anti-fungal Activity of Isolated Alveolar Macrophages by Confocal Microscopy
Published on: July 9, 2014
The putative polysaccharide synthase AfCps1 regulates Aspergillus fumigatus morphogenesis and conidia immune response
Sha Wang1, Anjie Yuan2, Liping Zeng2
1Key Laboratory of Vector Biology and Pathogen Control of Zhejiang Province, Huzhou University, Huzhou Central Hospital, Huzhou, P. R. China.
Abstract:
Aspergillus fumigatus is a well-known opportunistic pathogen that causes invasive aspergillosis (IA) infections with high mortality in immunosuppressed individuals. Morphogenesis, including hyphal growth, conidiation, and cell wall biosynthesis is crucial in A. fumigatus pathogenesis. Based on a previous random insertional mutagenesis library, we identified the putative polysaccharide synthase gene Afcps1 and its para-log Afcps2. Homologs of the cps gene are commonly found in the genomes of most fungal and some bacterial pathogens. Afcps1/cpsA is important in sporulation, cell wall composition, and virulence. However, the precise regulation patterns of cell wall integrity by Afcps1/cpsA and further effects on the immune response are poorly understood. Specifically, our in-depth study revealed that Afcps1 affects cell-wall stability, showing an increased resistance of ΔAfcps1 to the chitinmicrofibril destabilizing compound calcofluor white (CFW) and susceptibility of ΔAfcps1 to the β-(1,3)-glucan synthase inhibitor echinocandin caspofungin (CS). Additionally, deletion of Afcps2 had a normal sporulation phenotype but caused hypersensitivity to Na+ stress, CFW, and Congo red (CR). Specifically, quantitative analysis of cell wall composition using high-performance anion exchange chromatography-pulsed amperometric detector (HPAEC-PAD) analysis revealed that depletion of Afcps1 reduced cell wall glucan and chitin contents, which was consistent with the down-regulation of expression of the corresponding biosynthesis genes. Moreover, an elevated immune response stimulated by conidia of the ΔAfcps1 mutant in marrow-derived macrophages (BMMs) during phagocytosis was observed. Thus, our study provided new insights into the function of polysaccharide synthase Cps1, which is necessary for the maintenance of cell wall stability and the adaptation of conidia to the immune response of macrophages in A. fumigatus.
Insights
Aspergillus fumigatus polysaccharide synthase Cps1 maintains cell wall stability and helps conidia evade immune responses. Deleting Afcps1 in this opportunistic pathogen reduces cell wall integrity and increases macrophage attack.
Area of Science:
- Medical Mycology
- Molecular Biology
- Pathogen Biology
Background:
- Aspergillus fumigatus is an opportunistic pathogen causing invasive aspergillosis (IA) with high mortality.
- Morphogenesis and cell wall biosynthesis are critical for A. fumigatus pathogenesis.
- The polysaccharide synthase genes Afcps1 and Afcps2 were identified, with Afcps1/cpsA known to be important for sporulation, cell wall composition, and virulence.
Purpose of the Study:
- To investigate the precise regulation of cell wall integrity by Afcps1/cpsA.
- To understand the effects of Afcps1/cpsA on the immune response.
- To elucidate the function of polysaccharide synthase Cps1 in A. fumigatus.
Main Methods:
- Mutagenesis library screening to identify Afcps1 and Afcps2.
- Phenotypic analysis of deletion mutants (ΔAfcps1, ΔAfcp2) using compounds like calcofluor white (CFW) and caspofungin (CS).
- Quantitative cell wall composition analysis (HPAEC-PAD) and gene expression analysis.
- In vitro phagocytosis assays with marrow-derived macrophages (BMMs).
Main Results:
- ΔAfcps1 showed altered cell wall stability, with increased resistance to CFW and susceptibility to caspofungin.
- ΔAfcp2 exhibited hypersensitivity to Na+ stress, CFW, and Congo red (CR).
- Depletion of Afcps1 reduced cell wall glucan and chitin, down-regulating biosynthesis genes and increasing immune response in macrophages.
Conclusions:
- AfCPs1 is essential for maintaining cell wall stability in Aspergillus fumigatus.
- AfCPs1 plays a role in the adaptation of conidia to macrophage immune responses.
- This study provides new insights into the function of polysaccharide synthase Cps1 in fungal pathogenesis and immune evasion.
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