Rediscovery of viomellein as an antibacterial compound and identification of its biosynthetic gene cluster in dermatophytes
作者:Akihiro Ninomiya, K Masuda, Tsuyoshi Yamada, Misa Kuroki, Sayaka Ban, Takashi Yaguchi, Syun‐ichi Urayama, Daisuke Hagiwara · 发表于:Applied and Environmental Microbiology · 年份:2025 · DOI:10.1128/aem.02431-24 · 被引用次数:5 · 研究领域:Nail Diseases and Treatments、Fungal Biology and Applications、Antifungal resistance and susceptibility
ABSTRACT Fungi produce a wide variety of compounds, especially those that exhibit biological activity. Such compounds may aid the survival of fungi in the environment or may contribute to host infection for pathogenic species. Regarding dermatophytes, which affect a large number of patients worldwide, studies on metabolites that exhibit biological activity are scarce. In this study, to gain insight into the interaction with skin microbiota at the site of infection, we searched for compounds that exhibit antibacterial activity among the metabolites of Trichophyton rubrum . We rediscovered viomellein, a red pigment, as a potent antibacterial compound and identified its biosynthetic gene ( vio ) cluster by RNA-sequencing and gene deletion analyses. Sequential reconstruction of the vio cluster genes in Aspergillus oryzae revealed the biosynthetic pathway for viomellein via nor-toralactone, semivioxanthin, and vioxanthin production. The vio gene cluster is widely conserved among dermatophytes and is also present in some Aspergillus and Penicillium species. Consistent with the results, viomellein and its structural analogs, xanthomegnin, and vioxanthin, were shown to be produced by most dermatophyte species. These results suggest that dermatophytes can produce diverse naphthopyranone compounds, some of which have strong growth inhibitory effects against bacteria. This study provides a previously unknown molecular entity for antibiotic production by dermatophytes and provides insigh...