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. 2019 Mar:124:39-46.
doi: 10.1016/j.fgb.2019.01.001. Epub 2019 Jan 3.

Proteomic characterization of Aspergillus fumigatus isolated from air and surfaces of the International Space Station

Affiliations

Proteomic characterization of Aspergillus fumigatus isolated from air and surfaces of the International Space Station

Adriana Blachowicz et al. Fungal Genet Biol. 2019 Mar.

Abstract

The on-going Microbial Observatory Experiments on the International Space Station (ISS) revealed the presence of various microorganisms that may be affected by the distinct environment of the ISS. The low-nutrient environment combined with enhanced irradiation and microgravity may trigger changes in the molecular suite of microorganisms leading to increased virulence and resistance of microbes. Proteomic characterization of two Aspergillus fumigatus strains, ISSFT-021 and IF1SW-F4, isolated from HEPA filter debris and cupola surface of the ISS, respectively, is presented, along with a comparison to well-studied clinical isolates Af293 and CEA10. In-depth analysis highlights variations in the proteome of both ISS-isolated strains when compared to the clinical strains. Proteins that showed increased abundance in ISS isolates were overall involved in stress responses, and carbohydrate and secondary metabolism. Among the most abundant proteins were Pst2 and ArtA involved in oxidative stress response, PdcA and AcuE responsible for ethanol fermentation and glyoxylate cycle, respectively, TpcA, TpcF, and TpcK that are part of trypacidin biosynthetic pathway, and a toxin Asp-hemolysin. This report provides insight into possible molecular adaptation of filamentous fungi to the unique ISS environment.

Keywords: Aspergillus fumigatus; Proteome; The International Space Station.

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Figures

F1.
F1.. AspGD GO Slim terms of proteins differentially expressed in space strains when compared to Af293 and CEA10.
Differentially expressed proteins in ISSFT-021 and IF1SW-F4 are categorized into GO Slim categories using AspGD. Categories containing at least 2 up- or down-regulated proteins are presented.

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