Department of Biochemistry, Shimane University School of Medicine, Izumo, Japan.
Sci Rep. 2013;3:2186. doi: 10.1038/srep02186.
The tail of histone H3 is an ideal medium for storing epigenetic information because displacement of histone H3 is heavily restricted during transcription. To maintain the locus-specific modifications of histone H3, histone molecules should be retained locally at the original position through multiple rounds of transcription. Here, we found that fission yeast Spt6, a highly conserved RNA polymerase II-interacting histone H3-H4 chaperone, is essential for the maintenance of Lys-4 and Lys-9 methylation of histone H3 in euchromatin and heterochromatin, respectively. In euchromatin, loss of Lys-4 methylated histone H3 and deposition of newly synthesized Lys-56 acetylated histone H3 induced by Spt6 inactivation were coupled with transcription. While in heterochromatin, Spt6 prevents histone turnover and cryptic transcription in parallel with Clr3 histone deacetylase. We propose that Spt6 retains posttranslationally modified histone H3 during transcription to maintain epigenome integrity.
组蛋白 H3 的尾部是存储表观遗传信息的理想介质,因为在转录过程中组蛋白 H3 的置换受到严重限制。为了维持组蛋白 H3 的位置特异性修饰,组蛋白分子应该通过多个转录循环保留在原始位置。在这里,我们发现裂殖酵母 Spt6 是一种高度保守的 RNA 聚合酶 II 相互作用的组蛋白 H3-H4 伴侣,对于维持常染色质和异染色质中组蛋白 H3 的赖氨酸 4 和赖氨酸 9 甲基化分别是必需的。在常染色质中,Spt6 失活引起的赖氨酸 4 甲基化组蛋白 H3 的丢失和新合成的赖氨酸 56 乙酰化组蛋白 H3 的沉积与转录偶联。而在异染色质中,Spt6 与 Clr3 组蛋白去乙酰化酶平行防止组蛋白周转和隐蔽转录。我们提出 Spt6 在转录过程中保留翻译后修饰的组蛋白 H3,以维持表观基因组的完整性。