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Label-Free Quantitative Proteomics Workflow for Discovery-Driven Host-Pathogen Interactions
Published on: October 20, 2020
Pathogen-Host Interaction Repertoire at Proteome and Posttranslational Modification Levels During Fungal Infections
Yanjian Li1, Hailong Li2, Tianshu Sun3,4
1College of Life and Health Sciences, Northeastern University, Shenyang, China.
Abstract:
Prevalence of fungal diseases has increased globally in recent years, which often associated with increased immunocompromised patients, aging populations, and the novel Coronavirus pandemic. Furthermore, due to the limitation of available antifungal agents mortality and morbidity rates of invasion fungal disease remain stubbornly high, and the emergence of multidrug-resistant fungi exacerbates the problem. Fungal pathogenicity and interactions between fungi and host have been the focus of many studies, as a result, lots of pathogenic mechanisms and fungal virulence factors have been identified. Mass spectrometry (MS)-based proteomics is a novel approach to better understand fungal pathogenicities and host-pathogen interactions at protein and protein posttranslational modification (PTM) levels. The approach has successfully elucidated interactions between pathogens and hosts by examining, for example, samples of fungal cells under different conditions, body fluids from infected patients, and exosomes. Many studies conclude that protein and PTM levels in both pathogens and hosts play important roles in progression of fungal diseases. This review summarizes mass spectrometry studies of protein and PTM levels from perspectives of both pathogens and hosts and provides an integrative conceptual outlook on fungal pathogenesis, antifungal agents development, and host-pathogen interactions.
Insights
Mass spectrometry proteomics reveals crucial fungal virulence factors and host interactions. This approach aids in understanding fungal diseases and developing new antifungal treatments.
Area of Science:
- Mycology
- Proteomics
- Immunology
Background:
- Global rise in fungal disease prevalence linked to immunocompromised individuals, aging populations, and pandemics.
- Limited antifungal agents and emerging drug resistance contribute to high mortality rates in invasive fungal infections.
Purpose of the Study:
- To review mass spectrometry (MS)-based proteomics studies on fungal pathogenesis and host-pathogen interactions.
- To provide an integrated perspective on fungal disease mechanisms, antifungal drug development, and host-pathogen dynamics.
Main Methods:
- Utilizing mass spectrometry (MS)-based proteomics to analyze protein and posttranslational modification (PTM) levels.
- Examining fungal cells under various conditions, patient bodily fluids, and exosomes to elucidate host-pathogen interactions.
Main Results:
- Proteomics and PTM analyses have identified key fungal pathogenicity mechanisms and virulence factors.
- Protein and PTM profiles in both fungi and hosts are critical in the progression of fungal diseases.
Conclusions:
- MS-based proteomics offers a powerful approach to understanding complex fungal-host interactions.
- This methodology can guide the development of novel antifungal strategies and therapeutic interventions.
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