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The Heat Shock Protein 60 and Pap1 Participate in the Sporothrixschenckii-Host Interaction
Laura C García-Carnero1, Roberta Salinas-Marín2, Nancy E Lozoya-Pérez1
1Departamento de Biología, División de Ciencias Naturales y Exactas, Campus Guanajuato, Universidad de Guanajuato, Noria Alta s/n, col. Noria Alta, C.P., Guanajuato 36050, Gto., Mexico.
Abstract:
Sporothrixschenckii is one of the etiological agents of sporotrichosis, a worldwide-distributed subcutaneous mycosis. Its cell wall contains a glycoconjugate composed of rhamnose, mannose, glucuronic acid, and proteins, named peptidorhamnomannan, which harbors important Sporothrix-specific immunogenic epitopes. Although the peptidorhamnomannan carbohydrate moiety has been extensively studied, thus far, little is known about the protein core. Here, using LC-MS/MS, we analyzed the S.schenckii peptidorhamnomannan peptide fraction and generated mass signals of 325 proteins, most of them likely to be moonlighting proteins. Among the identified proteins, chaperonin GroEL/Hsp60 and the uncharacterized protein Pap1 were selected for further analysis. Both proteins were heterologously expressed in bacteria, and they showed adhesive properties to the extracellular matrix proteins laminin, elastin, fibrinogen, and fibronectin, although Pap1 also was bound to type-I and type-II collagen. The inoculation of concentrations higher than 40 μg of these proteins, separately, increased immune effectors in the hemolymph of Galleriamellonella larvae and protected animals from an S.schenckii lethal challenge. These observations were confirmed when yeast-like cells, pre-incubated with anti-rHsp60 or anti-rPap1 antibodies were used to inoculate larvae. The animals inoculated with pretreated cells showed increased survival rates when compared to the control groups. In conclusion, we report that Hsp60 and Pap1 are part of the cell wall peptidorhamnomannan, can bind extracellular matrix components, and contribute to the S.schenckii virulence. To our knowledge, this is the first report about moonlighting protein in the S.schenckii cell wall with an important role during the pathogen-host interaction.
Insights
This study identifies two moonlighting proteins, Hsp60 and Pap1, in the Sporothrix schenckii cell wall. These proteins contribute to fungal virulence by binding to host extracellular matrix and enhancing immune responses in Galleria mellonella.
Area of Science:
- Mycology
- Immunology
- Molecular Biology
Background:
- Sporothrix schenckii causes sporotrichosis, a subcutaneous mycosis.
- Its cell wall contains peptidorhamnomannan with immunogenic epitopes.
- The protein core of peptidorhamnomannan is poorly understood.
Purpose of the Study:
- To investigate the protein components of S. schenckii peptidorhamnomannan.
- To identify proteins involved in S. schenckii virulence and host-pathogen interaction.
- To characterize the function of identified moonlighting proteins.
Main Methods:
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) to analyze peptide fractions.
- Heterologous expression of selected proteins in bacteria.
- In vitro binding assays with extracellular matrix proteins.
- In vivo studies using Galleria mellonella larvae model.
Main Results:
- LC-MS/MS identified 325 proteins in the S. schenckii peptidorhamnomannan peptide fraction, many likely moonlighting proteins.
- Chaperonin GroEL/Hsp60 and uncharacterized protein Pap1 exhibited adhesive properties to extracellular matrix components like laminin, elastin, fibronectin, and collagen.
- Inoculation with Hsp60 and Pap1 proteins enhanced immune effectors and protected Galleria mellonella larvae against S. schenckii.
- Pre-incubation of S. schenckii cells with anti-Hsp60 or anti-Pap1 antibodies increased larval survival rates.
Conclusions:
- Hsp60 and Pap1 are cell wall components of S. schenckii.
- These proteins bind extracellular matrix, contributing to S. schenckii virulence.
- This is the first report of moonlighting proteins in the S. schenckii cell wall playing a role in pathogen-host interaction.
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