4.6 Article

The Zn(2)Cys(6)-type transcription factor LeuB cross-links regulation of leucine biosynthesis and iron acquisition in Aspergillus fumigatus

Journal

PLOS GENETICS
Volume 14, Issue 10, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1007762

Keywords

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Funding

  1. National Natural Science Foundation of China (NSFC) [81330035, 31770086, 31470193]
  2. Program for Jiangsu excellent scientific and technological innovation team [17CXTD00014]
  3. Priority Academic Program Development (PAPD) of Jiangsu Higher Education Institutions
  4. Shaoyang University Science Fund [17ZX24]
  5. D-A-CH program Novel molecular mechanisms of iron sensing and homeostasis in filamentous fungi (Austrian Research funds) [FWF I1346-B22]
  6. D-A-CH program Novel molecular mechanisms of iron sensing and homeostasis in filamentous fungi Deutsche Forschungsgemeinschaft DFG) [BR 1130/14-1]
  7. D-A-CH program Novel molecular mechanisms of iron sensing and homeostasis in filamentous fungi (DFG) [HO 2596/1-1]
  8. FWF-Doctoral Program HOROS [W1253]
  9. Medical University of Innsbruck Fund (MUI) [19970]

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Both branched-chain amino acids (BCAA) and iron are essential nutrients for eukaryotic cells. Previously, the Zn(2)Cys(6)-type transcription factor Leu3/LeuB was shown to play a crucial role in regulation of BCAA biosynthesis and nitrogen metabolism in Saccharomyces cerevisiae and Aspergillus nidulans. In this study, we found that the A. fumigatus homolog LeuB is involved in regulation of not only BCAA biosynthesis and nitrogen metabolism but also iron acquisition including siderophore metabolism. Lack of LeuB caused a growth defect, which was cured by supplementation with leucine or iron. Moreover, simultaneous inactivation of LeuB and HapX, a bZIP transcription factor required for adaptation to iron starvation, significantly aggravated the growth defect caused by inactivation of one of these regulators during iron starvation. In agreement with a direct role in regulation of both BCAA and iron metabolism, LeuB was found to bind to phylogenetically conserved motifs in promoters of genes involved in BCAA biosynthesis, nitrogen metabolism, and iron acquisition in vitro and in vivo, and was required for full activation of their expression. Lack of LeuB also caused activation of protease activity and autophagy via leucine depletion. Moreover, LeuB inactivation resulted in virulence attenuation of A. fumigatus in Galleria mellonella. Taken together, this study identified a previously uncharacterized direct cross-regulation of BCCA biosynthesis, nitrogen metabolism and iron homeostasis as well as proteolysis.

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