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Deacetylation Assays to Unravel the Interplay between Sirtuins SIRT2 and Specific Protein-substrates
Published on: February 27, 2016
Sirtuin E deacetylase is required for full virulence of Aspergillus fumigatus
Natália S Wassano1,2, Gabriela B da Silva1,2,3, Artur H Reis3
1Department of Biochemistry and Tissue Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, Brazil.
Abstract:
Aspergillus fumigatus represents a public health problem due to the high mortality rate in immunosuppressed patients and the emergence of antifungal-resistant isolates. Protein acetylation is a crucial post-translational modification that controls gene expression and biological processes. The strategic manipulation of enzymes involved in protein acetylation has emerged as a promising therapeutic approach for addressing fungal infections. Sirtuins, NAD+-dependent lysine deacetylases, regulate protein acetylation and gene expression in eukaryotes. However, their role in the human pathogenic fungus A. fumigatus remains unclear. This study constructs six single knockout strains of A. fumigatus and a strain lacking all predicted sirtuins (SIRTKO). The mutant strains are viable under laboratory conditions, indicating that sirtuins are not essential genes. Phenotypic assays suggest sirtuins' involvement in cell wall integrity, secondary metabolite production, thermotolerance, and virulence. Deletion of sirE attenuates virulence in murine and Galleria mellonella infection models. The absence of SirE alters the acetylation status of proteins, including histones and non-histones, and triggers significant changes in the expression of genes associated with secondary metabolism, cell wall biosynthesis, and virulence factors. These findings encourage testing sirtuin inhibitors as potential therapeutic strategies to combat A. fumigatus infections or in combination therapy with available antifungals.
Insights
Sirtuins are NAD+-dependent deacetylases. Deleting the sirE gene in Aspergillus fumigatus reduces fungal virulence and alters protein acetylation, suggesting sirtuin inhibitors as potential antifungal therapies.
Area of Science:
- Microbiology
- Molecular Biology
- Biochemistry
Background:
- Aspergillus fumigatus causes severe infections in immunocompromised individuals, with rising antifungal resistance.
- Protein acetylation, regulated by sirtuins, controls critical cellular processes.
- The function of sirtuins in A. fumigatus is largely unknown.
Purpose of the Study:
- To investigate the role of sirtuins in the human pathogenic fungus Aspergillus fumigatus.
- To assess the impact of sirtuin deletion on fungal physiology and virulence.
Main Methods:
- Construction of single sirtuin knockout strains and a complete sirtuin knockout (SIRTKO) strain in A. fumigatus.
- Phenotypic characterization including cell wall integrity, thermotolerance, and virulence assays.
- Analysis of protein acetylation status and gene expression changes in sirE deletion mutants.
Main Results:
- Sirtuins are not essential for A. fumigatus viability under laboratory conditions.
- Sirtuins influence cell wall integrity, secondary metabolism, thermotolerance, and virulence.
- Deletion of sirE significantly attenuated virulence in murine and Galleria mellonella models.
- Loss of SirE altered protein acetylation and gene expression related to virulence and metabolism.
Conclusions:
- Sirtuins play a significant role in A. fumigatus virulence and physiology.
- Targeting sirtuins, particularly SirE, offers a potential strategy for novel antifungal therapies.
- Sirtuin inhibitors could be explored as adjuncts to existing antifungal treatments.

