Laboratory of Bioorganic Chemistry, Graduate School of Chemical Sciences and Engineering, Hokkaido University, Sapporo, Japan.
Department of Applied Chemistry and Biotechnology, Graduate School of Engineering, University of Fukui, Fukui, Japan.
Genes Cells. 2024 Jun;29(6):471-485. doi: 10.1111/gtc.13116. Epub 2024 Apr 17.
In fission yeast, Schizosaccharomyces pombe, constitutive heterochromatin defined by methylation of histone H3 lysine 9 (H3K9me) and its binding protein Swi6/HP1 localizes at the telomere, centromere, and mating-type loci. These loci contain DNA sequences called dg and dh, and the RNA interference (RNAi)-dependent system establishes and maintains heterochromatin at dg/dh. Bi-directional transcription at dg/dh induced by RNA polymerase II is critical in RNAi-dependent heterochromatin formation because the transcribed RNAs provide substrates for siRNA synthesis and a platform for assembling RNAi factors. However, a regulator of dg/dh transcription during the establishment of heterochromatin is not known. Here, we found that a zinc-finger protein Moc3 localizes dh and activates dh-forward transcription in its zinc-finger-dependent manner when heterochromatin structure or heterochromatin-dependent silencing is compromised. However, Moc3 does not localize at normal heterochromatin and does not activate the dh-forward transcription. Notably, the loss of Moc3 caused a retarded heterochromatin establishment, showing that Moc3-dependent dh-forward transcription is critical for RNAi-dependent heterochromatin establishment. Therefore, Moc3 is a transcriptional activator that induces RNAi to establish heterochromatin.
在裂殖酵母(Schizosaccharomyces pombe)中,由组蛋白 H3 赖氨酸 9(H3K9me)甲基化及其结合蛋白 Swi6/HP1 定义的组成性异染色质定位于端粒、着丝粒和交配型位点。这些位点包含称为 dg 和 dh 的 DNA 序列,并且 RNA 干扰(RNAi)依赖性系统在 dg/dh 处建立和维持异染色质。由 RNA 聚合酶 II 诱导的 dg/dh 上的双向转录对于 RNAi 依赖性异染色质形成至关重要,因为转录的 RNA 为 siRNA 合成提供了底物,并为组装 RNAi 因子提供了平台。然而,在异染色质形成过程中,dg/dh 转录的调节剂尚不清楚。在这里,我们发现锌指蛋白 Moc3 定位于 dh,并在异染色质结构或异染色质依赖性沉默受到破坏时以其锌指依赖性方式激活 dh 正向转录。然而,Moc3 不在正常异染色质上定位,也不激活 dh 正向转录。值得注意的是,Moc3 的缺失导致异染色质建立延迟,表明 Moc3 依赖性 dh 正向转录对于 RNAi 依赖性异染色质建立至关重要。因此,Moc3 是一种转录激活因子,可诱导 RNAi 建立异染色质。