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◆ Nature Communications2025-11-21· Biology

Unveiling a pervasive DNA adenine methylation regulatory network in the early-diverging fungus Rhizopus microsporus

Carlos Lax, Leo Baumgart, Ghizlane Tahiri, Natalia Nicolás-Muñoz, Yu Zhang, Ian K. Blaby, Stephen J. Mondo, Bishoy Kamel, Ronan C. O’Malley, Vivian Ng, Eusebio Navarro, Igor V. Grigoriev, Francisco E. Nicolás, Victoriano Garre

原始摘要(英文原文)· Original abstract
Development of the DNA affinity purification and sequencing (DAP-seq) technique has allowed genome-scale studies of transcription factor (TF)-binding sites with high reproducibility. Here, we apply this technique to the human opportunistic pathogen Rhizopus microsporus, a mucoralean fungus belonging to the understudied group of early-diverging fungi. We characterize genome-wide binding sites of 58 TFs encoded by genes regulated through adenine methylation and representing major TF families. This analysis reveals their binding profiles and recognized sequences, expanding and diversifying the catalog of known fungal motifs. By integrating this data with DNA 6-methyladenine profiling, we uncover the extensive direct and indirect impact of this epigenetic modification on the regulation of gene expression. Furthermore, we use the generated data to identify TFs involved in biologically relevant processes such as zinc metabolism and light response. Our work enhances our understanding of regulatory mechanisms in R. microsporus and provides broader insights into gene regulation across the fungal kingdom. DNA affinity purification and sequencing (DAP-seq) allows genome-scale studies of transcription factor (TF)-binding sites with high reproducibility. Here, Lax et al. use this technique to characterize 58 TFs encoded by genes regulated by adenine methylation, and provide insights into the regulatory mechanisms of gene expression in an opportunistic pathogenic fungus.
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Unveiling a pervasive DNA adenine methylation regulatory network in the early-diverging fungus Rhizopus microsporus — 科研速览 Science Skim