Reducing Aspergillus fumigatus Virulence through Targeted Dysregulation of the Conidiation Pathway

James I P Stewart1,2, Vinicius M Fava2,3, Joshua D Kerkaert4

  • 1Department of Experimental Medicine, McGill University, Glen Site, Research Institute of the McGill University Health Centre, Montreal, Quebec, Canada.

Mbio
|February 6, 2020
PubMed

Insights

Forcing the conidiation pathway in Aspergillus fumigatus reduces its virulence. Activating conidiation in fungal filaments impairs disease development and alters metabolism, suggesting a new therapeutic approach for aspergillosis.

Area of Science:

  • Medical Mycology
  • Molecular Biology
  • Infectious Diseases

Background:

  • Invasive pulmonary disease caused by *Aspergillus fumigatus* is a significant threat to immunocompromised individuals.
  • Fungal conidia germinate into invasive hyphae, but conidiation is rare during human infection, favoring vegetative growth.
  • The study investigates the hypothesis that inducing conidiation during infection can suppress fungal growth and reduce virulence.

Purpose of the Study:

  • To investigate the effects of dysregulating the conidiation pathway on *A. fumigatus* virulence.
  • To determine if forced induction of conidiation can attenuate fungal growth and pathogenicity.
  • To explore the metabolic and signaling changes associated with induced conidiation.

Main Methods:

  • A doxycycline-inducible promoter controlled the expression of *brlA*, a key transcriptional regulator of conidiation.
  • The *brlA* overexpression strain was tested *in vitro* and *in vivo* (invertebrate and mouse models).
  • RNA sequencing and phenotypic analysis were employed to assess the impact of *brlA* overexpression.

Main Results:

  • Doxycycline-induced *brlA* overexpression led to conidiation at low doses and growth arrest at high doses *in vitro*.
  • Overexpression of *brlA* significantly attenuated *A. fumigatus* virulence in both invertebrate and mouse models.
  • Metabolic analysis revealed altered cell signaling, upregulation of trehalose biosynthesis, and downregulation of galactosaminogalactan synthesis.

Conclusions:

  • Forced activation of the *A. fumigatus* conidiation pathway can suppress fungal growth and reduce virulence.
  • The findings suggest that *brlA*-inducing small molecules could be a novel therapeutic strategy for aspergillosis.
  • Metabolic reprogramming, including shifts in polysaccharide and carbohydrate metabolism, is linked to virulence attenuation.