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Genetic Manipulation of the Plant Pathogen Ustilago maydis to Study Fungal Biology and Plant Microbe Interactions
Published on: September 30, 2016
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.
Abstract:
Ustiloxins are ribosomally synthesized and post-translationally modified peptides (RiPPs) first reported in Ascomycetes. Originally identified as metabolites of the rice pathogenic fungus Ustilaginoidea virens, they were recently identified among the metabolites of the mold Aspergillus flavus, along with their corresponding biosynthetic gene cluster. Ustilaginoidea virens produces ustiloxins A and B, whereas A. flavus produces only ustiloxin B. Correspondingly, in U. virens, the ustiloxin precursor peptide, from which the compound backbone is cleaved and cyclized, contains the core peptides Tyr(Y)-Val(V)-Ile(I)-Gly(G) and Tyr(Y)-Ala(A)-Ile(I)-Gly(G) for ustiloxins A and B, respectively, whereas that of A. flavus contains only the YAIG motif for ustiloxin B. In this study, the gene that encodes the precursor peptide in A. flavus, ustA, was replaced with synthetic genes encoding the core peptides YVIG or FAIG, to investigate their compatibility with the ustiloxin biosynthetic machinery. We also examined the importance of the hydroxyl group on the aromatic ring of Tyr for cyclization of the YAIG core peptide. Against our expectation, the ustA variant possessing YVIG core peptides did not produce a detectable amount of ustiloxin A, even though the ustiloxin biosynthetic gene clusters of A. flavus and U. virens both contain 13 homologous genes. We confirmed that the lack of ustiloxin A production was not due to lack or insufficient expression of the substituted synthetic gene. This result, along with the differences between the primary sequences of UstYa and UstYb in A. flavus and U. virens, suggests that the ustiloxin biosynthetic machinery is optimized for the native core peptide sequences. The synthetic FAIG-encoding ustA did not yield any compounds specific to the FAIG core peptide, suggesting that the hydroxyl group on the aromatic ring of Tyr in the core peptide is indispensable for cyclization of the core peptide, even though it is not structurally involved in the cyclization.
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.
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