Department of Genetics, the Human Genetics Institute of New Jersey, Rutgers University, Piscataway, New Jersey 08854, USA.
Genes Dev. 2013 Mar 15;27(6):639-53. doi: 10.1101/gad.211342.112. Epub 2013 Mar 6.
The establishment of the epigenetic mark H4K20me1 (monomethylation of H4K20) by PR-Set7 during G2/M directly impacts S-phase progression and genome stability. However, the mechanisms involved in the regulation of this event are not well understood. Here we show that SirT2 regulates H4K20me1 deposition through the deacetylation of H4K16Ac (acetylation of H4K16) and determines the levels of H4K20me2/3 throughout the cell cycle. SirT2 binds and deacetylates PR-Set7 at K90, modulating its chromatin localization. Consistently, SirT2 depletion significantly reduces PR-Set7 chromatin levels, alters the size and number of PR-Set7 foci, and decreases the overall mitotic deposition of H4K20me1. Upon stress, the interaction between SirT2 and PR-Set7 increases along with the H4K20me1 levels, suggesting a novel mitotic checkpoint mechanism. SirT2 loss in mice induces significant defects associated with defective H4K20me1-3 levels. Accordingly, SirT2-deficient animals exhibit genomic instability and chromosomal aberrations and are prone to tumorigenesis. Our studies suggest that the dynamic cross-talk between the environment and the genome during mitosis determines the fate of the subsequent cell cycle.
PR-Set7 在 G2/M 期通过组蛋白 H4K20me1(H4K20 单甲基化)的建立直接影响 S 期进程和基因组稳定性。然而,调控这一事件的机制尚不清楚。在这里,我们发现 SirT2 通过去乙酰化 H4K16Ac(H4K16 乙酰化)调控 H4K20me1 的沉积,并决定细胞周期中 H4K20me2/3 的水平。SirT2 结合并在 K90 处去乙酰化 PR-Set7,调节其染色质定位。一致地,SirT2 耗竭显著降低了 PR-Set7 的染色质水平,改变了 PR-Set7 焦点的大小和数量,并减少了整体有丝分裂 H4K20me1 的沉积。在应激下,SirT2 和 PR-Set7 之间的相互作用随着 H4K20me1 水平的增加而增加,提示存在一种新的有丝分裂检查点机制。小鼠中 SirT2 的缺失会引起与 H4K20me1-3 水平缺陷相关的显著缺陷。因此,SirT2 缺陷的动物表现出基因组不稳定性和染色体异常,并易发生肿瘤形成。我们的研究表明,有丝分裂过程中环境和基因组之间的动态相互作用决定了后续细胞周期的命运。