School of Biomedical Sciences, The University of Hong Kong, Hong Kong Island, Hong Kong.
Department of Biomedical Sciences, The City University of Hong Kong, Kowloon, Hong Kong.
Nat Commun. 2021 Feb 11;12(1):949. doi: 10.1038/s41467-021-21236-x.
Spindlin1 is a unique multivalent epigenetic reader that facilitates ribosomal RNA transcription. In this study, we provide molecular and structural basis by which Spindlin1 acts in complex with C11orf84 to preferentially recognize non-canonical bivalent mark of trimethylated lysine 4 and lysine 9 present on the same histone H3 tail (H3K4me3K9me3). We demonstrate that C11orf84 binding stabilizes Spindlin1 and enhances its association with bivalent H3K4me3K9me3 mark. The functional analysis suggests that Spindlin1/C11orf84 complex can displace HP1 proteins from H3K4me3K9me3-enriched rDNA loci, thereby facilitating the conversion of these poised rDNA repeats from the repressed state to the active conformation, and the consequent recruitment of RNA Polymerase I for rRNA transcription. Our study uncovers a previously unappreciated mechanism of bivalent H3K4me3K9me3 recognition by Spindlin1/C11orf84 complex required for activation of rRNA transcription.
Spindlin1 是一种独特的多功能表观遗传读码器,有助于核糖体 RNA 的转录。在这项研究中,我们提供了分子和结构基础,通过该基础,Spindlin1 与 C11orf84 形成复合物,以优先识别组蛋白 H3 尾部(H3K4me3K9me3)上存在的相同非典型双价标记三甲基化赖氨酸 4 和赖氨酸 9。我们证明 C11orf84 结合稳定了 Spindlin1,并增强了其与双价 H3K4me3K9me3 标记的结合。功能分析表明,Spindlin1/C11orf84 复合物可以将 HP1 蛋白从富含 H3K4me3K9me3 的 rDNA 基因座上置换下来,从而促进这些处于静止状态的 rDNA 重复从抑制状态转变为活跃构象,并随后招募 RNA 聚合酶 I 进行 rRNA 转录。我们的研究揭示了一种以前未被重视的 Spindlin1/C11orf84 复合物识别双价 H3K4me3K9me3 的机制,该机制对于 rRNA 转录的激活是必需的。