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Discovering Protein Interactions and Characterizing Protein Function Using HaloTag Technology
Published on: July 12, 2014
Identification and characterization of Paracoccidioides lutzii proteins interacting with macrophages
Mariana Vieira Tomazett1, Lílian Cristiane Baeza2, Juliano Domiraci Paccez1
1Laboratório de Biologia Molecular, Instituto de Ciências Biológicas, Universidade Federal de Goiás, 74001-970, Goiânia, Goiás, Brazil.
Abstract:
Paracoccidioidomycosis (PCM), caused by thermodimorphic fungi of the Paracoccidioides genus, is a systemic disorder that involves the lungs and other organs. The adherence of pathogenic microorganisms to host tissues is an essential event in the onset of colonization and spread. The host-pathogen interaction is a complex interplay between the defense mechanisms of the host and the efforts of pathogenic microorganisms to colonize it. Therefore, the identification of fungi proteins interacting with host proteins is an important step understanding the survival strategies of the fungus within the host. In this paper, we used affinity chromatography based on surface proteomics (ACSP) to investigate the interactions of pathogen proteins with host surface molecules. Paracoccidioides lutzii extracts enriched of surface proteins were captured by chromatographic resin, which was immobilized with macrophage cell surface proteins, and identified by mass spectrometry. A total of 215 proteins of P. lutzii were identified interacting with macrophage proteins. In silico analysis classified those proteins according to the presence of sites for N- and O-glycosylation and secretion by classical and non-classical pathways. Serine proteinase (SP) and fructose-1,6-bisphosphate aldolase (FBA) were identified in our proteomics analysis. Immunolocalization assay and flow cytometry both showed an increase in the expression of these two proteins during host-pathogen interaction.
Insights
Researchers identified 215 Paracoccidioides lutzii proteins interacting with host macrophage proteins using affinity chromatography. Key proteins like serine proteinase and fructose-1,6-bisphosphate aldolase were upregulated during host-pathogen interactions, aiding fungal survival.
Area of Science:
- Mycology
- Immunology
- Proteomics
Background:
- Paracoccidioidomycosis (PCM) is a systemic fungal infection caused by Paracoccidioides species.
- Understanding host-pathogen interactions is crucial for deciphering fungal survival strategies.
- Fungal adherence to host tissues initiates colonization and disease progression.
Purpose of the Study:
- To identify proteins from Paracoccidioides lutzii that interact with host macrophage surface molecules.
- To investigate the role of these interacting proteins in host-pathogen dynamics.
Main Methods:
- Affinity chromatography based on surface proteomics (ACSP) was employed.
- Paracoccidioides lutzii surface protein extracts were incubated with immobilized macrophage surface proteins.
- Protein identification was performed using mass spectrometry.
Main Results:
- A total of 215 Paracoccidioides lutzii proteins were identified interacting with macrophage proteins.
- In silico analysis characterized these proteins based on glycosylation and secretion pathways.
- Serine proteinase (SP) and fructose-1,6-bisphosphate aldolase (FBA) were identified and showed increased expression during host-pathogen interaction via immunolocalization and flow cytometry.
Conclusions:
- This study reveals key P. lutzii proteins involved in host cell interactions.
- SP and FBA are implicated in the fungal survival mechanisms within the host environment.
- The findings provide insights into the molecular basis of Paracoccidioidomycosis pathogenesis.
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