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Caspofungin exposure alters the core septin AspB interactome of Aspergillus fumigatus
José M Vargas-Muñiz1, Hilary Renshaw1, Greg Waitt2
1Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, NC, United States.
Abstract:
Aspergillus fumigatus, the main etiological agent of invasive aspergillosis, is a leading cause of death in immunocompromised patients. Septins, a conserved family of GTP-binding proteins, serve as scaffolding proteins to recruit enzymes and key regulators to different cellular compartments. Deletion of the A. fumigatus septin aspB increases susceptibility to the echinocandin antifungal caspofungin. However, how AspB mediates this response to caspofungin is unknown. Here, we characterized the AspB interactome under basal conditions and after exposure to a clinically relevant concentration of caspofungin. While A. fumigatus AspB interacted with 334 proteins, including kinases, cell cycle regulators, and cell wall synthesis-related proteins under basal growth conditions, caspofungin exposure altered AspB interactions. A total of 69 of the basal interactants did not interact with AspB after exposure to caspofungin, and 54 new interactants were identified following caspofungin exposure. We generated A. fumigatus deletion strains for 3 proteins (ArpB, Cyp4, and PpoA) that only interacted with AspB following exposure to caspofungin that were previously annotated as induced after exposure to antifungal agents, yet only PpoA was implicated in the response to caspofungin. Taken together, we defined how the septin AspB interactome is altered in the presence of a clinically relevant antifungal.
Insights
The septin AspB in Aspergillus fumigatus interacts with many proteins, but caspofungin antifungal treatment significantly alters these interactions. This study defines how AspB
Area of Science:
- Mycology
- Molecular Biology
- Antifungal Research
Background:
- Aspergillus fumigatus is a major cause of invasive aspergillosis in immunocompromised individuals.
- Septins, like AspB, are crucial scaffolding proteins involved in cellular processes.
- AspB's role in caspofungin antifungal response is not well understood.
Purpose of the Study:
- To characterize the Aspergillus fumigatus AspB protein interactome under basal conditions.
- To investigate how caspofungin exposure alters the AspB interactome.
- To identify proteins interacting with AspB specifically upon antifungal treatment.
Main Methods:
- Proteomic analysis (mass spectrometry) to identify AspB interactants.
- Comparison of AspB interactome under basal growth and caspofungin exposure.
- Generation of deletion strains for novel AspB interactants (ArpB, Cyp4, PpoA).
Main Results:
- Under basal conditions, AspB interacted with 334 proteins, including kinases and cell cycle regulators.
- Caspofungin exposure led to the loss of 69 interactions and the gain of 54 new AspB interactants.
- Only PpoA, among the newly identified interactants, was implicated in the response to caspofungin.
Conclusions:
- The septin AspB interactome is dynamic and significantly altered by caspofungin.
- Understanding these altered interactions provides insights into antifungal resistance mechanisms.
- AspB's role in mediating cellular responses to antifungal stress is further elucidated.
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