4.6 Article

Genomic and Phenotypic Analysis of COVID-19-Associated Pulmonary Aspergillosis Isolates of Aspergillus fumigatus

期刊

MICROBIOLOGY SPECTRUM
卷 9, 期 1, 页码 -

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/Spectrum.00010-21

关键词

pathogenicity; coinfection; secondary infection; virulence factors; superinfection; acute respiratory distress syndrome; Aspergillus; aspergillosis; COVID-19

资金

  1. Howard Hughes Medical Institute through the James H. Gilliam Fellowships for Advanced Study Program
  2. Vanderbilt University
  3. Burroughs Wellcome Fund
  4. National Science Foundation [DEB-1442113]
  5. National Institutes of Health/National Institute of Allergy and Infectious Diseases [R56 AI146096]
  6. Fundacao de Amparo a Pesquisa do Estado de Sao Paulo (FAPESP) from Brazil [2017/21983-3, 2019/07526-4]
  7. Conselho Nacional de Desenvolvimento Cientifico e Tecnologico (CNPq) from Brazil
  8. Key-Area Research and Development Program of Guangdong Province [2018B020206001]
  9. Deans Office, Faculty of Medicine, University of Cologne
  10. FAPESP [2018/00715-3]
  11. National Center for Complementary and Integrative Health, a component of the National Institutes of Health [F31 AT010558]
  12. German Federal Ministry of Research and Education - Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany's Excellence Strategy (CECAD) [EXC 2030, 390661388]
  13. Allecra Therapeutics
  14. Biosys
  15. Merck/MSD
  16. Octapharma, Paratek
  17. Shionogi
  18. Miltenyi Biotec GmbH
  19. Gilead Sciences, GPR Academy Ruesselsheim
  20. MSD Sharp & Dohme GmbH, Noxxon N.V., and University Hospital

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The study analyzed the genomes and phenotypic profiles of four COVID-19-associated pulmonary aspergillosis (CAPA) isolates of Aspergillus fumigatus from patients in Germany, finding that these isolates were generally similar to other reference strains, but with some variations in virulence due to gene mutations. These findings contribute to expanding our understanding of COVID-19-associated pulmonary aspergillosis.
The ongoing global pandemic caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is responsible for coronavirus disease 2019 (COVID-19), first described in Wuhan, China. A subset of COVID-19 patients has been reported to have acquired secondary infections by microbial pathogens, such as opportunistic fungal pathogens from the genus Aspergillus. To gain insight into COVID-19-associated pulmonary aspergillosis (CAPA), we analyzed the genomes and characterized the phenotypic profiles of four CAPA isolates of Aspergillus fumigatus obtained from patients treated in the area of North Rhine-Westphalia, Germany. By examining the mutational spectrum of single nucleotide polymorphisms, insertiondeletion polymorphisms, and copy number variants among 206 genes known to modulate A. fumigatus virulence, we found that CAPA isolate genomes do not exhibit significant differences from the genome of the Af293 reference strain. By examining a number of factors, including virulence in an invertebrate moth model, growth in the presence of osmotic, cell wall, and oxidative stressors, secondary metabolite biosynthesis, and the MIC of antifungal drugs, we found that CAPA isolates were generally, but not always, similar to A. fumigatus reference strains Af293 and CEA17. Notably, CAPA isolate D had more putative loss-of-function mutations in genes known to increase virulence when deleted. Moreover, CAPA isolate D was significantly more virulent than the other three CAPA isolates and the A. fumigatus reference strains Af293 and CEA17, but similarly virulent to two other clinical strains of A. fumigatus. These findings expand our understanding of the genomic and phenotypic characteristics of isolates that cause CAPA. IMPORTANCE The global pandemic caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the etiological agent of coronavirus disease 2019 (COVID19), has already killed millions of people. COVID-19 patient outcome can be further complicated by secondary infections, such as COVID-19-associated pulmonary aspergillosis (CAPA). CAPA is caused by Aspergillus fungal pathogens, but there is little information about the genomic and phenotypic characteristics of CAPA isolates. We conducted genome sequencing and extensive phenotyping of four CAPA isolates of Aspergillus fumigatus from Germany. We found that CAPA isolates were often, but not always, similar to other reference strains of A. fumigatus across 206 genetic determinants of infection-relevant phenotypes, including virulence. For example, CAPA isolate D was more virulent than other CAPA isolates and reference strains in an invertebrate model of fungal disease, but similarly virulent to two other clinical strains. These results expand our understanding of COVID-19-associated pulmonary aspergillosis.

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