The discovery of N6-methyladenine (6mA) in eukaryotic genomes, typically found in prokaryotic DNA, has revolutionized epigenetics. Here, we show that symmetric 6mA is essential in the early diverging fungus Rhizopus microsporus, as the absence of the MT-A70 complex (MTA1c) responsible for this modification results in a lethal phenotype. 6mA is present in 70% of the genes, correlating with the presence of H3K4me3 and H2A.Z in open euchromatic regions. This modification is found predominantly in nucleosome linker regions, influencing the nucleosome positioning around the transcription start sites of highly expressed genes. Controlled downregulation of MTA1c reduces symmetric 6mA sites affecting nucleosome positioning and histone modifications, leading to altered gene expression, which is likely the cause of the severe phenotypic changes observed. Our study highlights the indispensable role of the DNA 6mA in a multicellular organism and delineates the mechanisms through which this epigenetic mark regulates gene expression in a eukaryotic genome.
Symmetric adenine methylation is an essential DNA modification in the early-diverging fungus Rhizopus microsporus.
对称性腺嘌呤甲基化是早期分化的真菌小孢根霉中一种重要的DNA修饰
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作者:Lax Carlos, Mondo Stephen J, MartÃnez José F, Muszewska Anna, Baumgart Leo A, Pérez-Ruiz José A, Carrillo-MarÃn Pablo, LaButti Kurt, Lipzen Anna, Zhang Yu, Guo Jie, Ng Vivian, Navarro Eusebio, Pawlowska Teresa E, Grigoriev Igor V, Nicolás Francisco E, Garre Victoriano
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Apr 24; 16(1):3843 |
| doi: | 10.1038/s41467-025-59170-x | 研究方向: | 表观遗传 |
| 信号通路: | DNA甲基化 | ||
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