Division of Newborn Medicine and Program in Epigenetics, Department of Medicine, Boston Children's Hospital, Boston, Massachusetts, USA.
Mol Cell Biol. 2013 Nov;33(21):4166-80. doi: 10.1128/MCB.00689-13. Epub 2013 Aug 26.
Monomethylated histone H4 lysine 20 (H4K20me1) is tightly regulated during the cell cycle. The H4K20me1 demethylase PHF8 transcriptionally regulates many cell cycle genes and is therefore predicted to play key roles in the cell cycle. Here, we show that PHF8 protein levels are the highest during G2 phase and mitosis, and we found PHF8 protein stability to be regulated by the ubiquitin-proteasome system. Purification of the PHF8 complex led to the identification of many subunits of the anaphase-promoting complex (APC) associated with PHF8. We showed that PHF8 interacts with the CDC20-containing APC (APC(cdc20)) primarily during mitosis. In addition, we defined a novel, KEN- and D-box-independent, LXPKXLF motif on PHF8 that is required for binding to CDC20. Through various in vivo and in vitro assays, we demonstrate that mutations of the LXPKXLF motif abrogate polyubiquitylation of PHF8 by the APC. APC substrates are typically cell cycle regulators, and consistent with this, the loss of PHF8 leads to prolonged G2 phase and defective mitosis. Furthermore, we provide evidence that PHF8 plays an important role in transcriptional activation of key G2/M genes during G2 phase. Taken together, these findings suggest that PHF8 is regulated by APC(cdc20) and plays an important role in the G2/M transition.
组蛋白 H4 赖氨酸 20 的单甲基化(H4K20me1)在细胞周期中受到严格调控。H4K20me1 去甲基酶 PHF8 转录调控许多细胞周期基因,因此预计在细胞周期中发挥关键作用。在这里,我们表明 PHF8 蛋白水平在 G2 期和有丝分裂期间最高,并且我们发现 PHF8 蛋白稳定性受泛素-蛋白酶体系统调节。PHF8 复合物的纯化导致鉴定出与 PHF8 相关的许多后期促进复合物 (APC) 的亚基。我们表明 PHF8 主要在有丝分裂期间与包含 CDC20 的 APC (APC(cdc20)) 相互作用。此外,我们定义了 PHF8 上一个新的、KEN 和 D 盒非依赖性、LXPKXLF 基序,该基序对于与 CDC20 结合是必需的。通过各种体内和体外测定,我们证明该 LXPKXLF 基序的突变会使 APC 对 PHF8 的多泛素化作用缺失。APC 底物通常是细胞周期调节剂,与这一观点一致,PHF8 的缺失导致 G2 期延长和有丝分裂缺陷。此外,我们提供了证据表明 PHF8 在 G2 期关键 G2/M 基因的转录激活中发挥重要作用。总之,这些发现表明 PHF8 受 APC(cdc20) 调控,并在 G2/M 转换中发挥重要作用。