Ustiloxin biosynthetic machinery is not compatible between Aspergillus flavus and Ustilaginoidea virens

Maiko Umemura1, Kaoru Kuriiwa2, Koichi Tamano3

  • 1Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), 1-1-1 Higashi, Tsukuba, Ibaraki 305-8566, Japan.

Insights

Researchers explored ustiloxin biosynthesis in Aspergillus flavus by modifying precursor peptides. They found the native sequence is crucial for ustiloxin A production and Tyr

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Mycology

Background:

  • Ustiloxins are ribosomally synthesized and post-translationally modified peptides (RiPPs) identified in fungi like Ustilaginoidea virens and Aspergillus flavus.
  • Ustilaginoidea virens produces ustiloxins A and B, while Aspergillus flavus produces only ustiloxin B, differing in precursor peptide sequences.

Purpose of the Study:

  • To investigate the compatibility of modified precursor peptides with the ustiloxin biosynthetic machinery in Aspergillus flavus.
  • To determine the role of the tyrosine hydroxyl group in the cyclization of the ustiloxin core peptide.

Main Methods:

  • Genetic modification of the ustA gene in Aspergillus flavus to encode synthetic core peptides (YVIG and FAIG).
  • Analysis of ustiloxin production in genetically modified strains.
  • Confirmation of gene expression levels for substituted synthetic genes.

Main Results:

  • Expression of the YVIG core peptide did not lead to detectable ustiloxin A production, despite homologous gene clusters in both fungi.
  • The synthetic FAIG core peptide did not yield any specific compounds, indicating the necessity of the tyrosine hydroxyl group for cyclization.
  • Lack of production was not attributed to insufficient gene expression.

Conclusions:

  • The ustiloxin biosynthetic machinery in Aspergillus flavus is optimized for native precursor peptide sequences.
  • The hydroxyl group on the tyrosine aromatic ring is essential for the cyclization of the ustiloxin core peptide, even if not directly involved in the cyclization structure.