Ait-Si-Ali Slimane, Guasconi Valentina, Fritsch Lauriane, Yahi Hakima, Sekhri Redha, Naguibneva Irina, Robin Philippe, Cabon Florence, Polesskaya Anna, Harel-Bellan Annick
UPR 9079 CNRS-Labellisée Ligue Nationale Contre le Cancer, Institut André Lwoff, Villejuif, France.
EMBO J. 2004 Feb 11;23(3):605-15. doi: 10.1038/sj.emboj.7600074. Epub 2004 Feb 5.
The Rb/E2F complex represses S-phase genes both in cycling cells and in cells that have permanently exited from the cell cycle and entered a terminal differentiation pathway. Here we show that S-phase gene repression, which involves histone-modifying enzymes, occurs through distinct mechanisms in these two situations. We used chromatin immunoprecipitation to show that methylation of histone H3 lysine 9 (H3K9) occurs at several Rb/E2F target promoters in differentiating cells but not in cycling cells. Furthermore, phenotypic knock-down experiments using siRNAs showed that the histone methyltransferase Suv39h is required for histone H3K9 methylation and subsequent repression of S-phase gene promoters in differentiating cells, but not in cycling cells. These results indicate that the E2F target gene permanent silencing mechanism that is triggered upon terminal differentiation is distinct from the transient repression mechanism in cycling cells. Finally, Suv39h-depleted myoblasts were unable to express early or late muscle differentiation markers. Thus, appropriately timed H3K9 methylation by Suv39h seems to be part of the control switch for exiting the cell cycle and entering differentiation.
Rb/E2F复合物在循环细胞以及那些已经永久退出细胞周期并进入终末分化途径的细胞中均会抑制S期基因。在此我们表明,涉及组蛋白修饰酶的S期基因抑制在这两种情况下通过不同机制发生。我们利用染色质免疫沉淀表明,组蛋白H3赖氨酸9(H3K9)的甲基化发生在分化细胞中的几个Rb/E2F靶启动子上,而在循环细胞中则不会发生。此外,使用小干扰RNA(siRNA)进行的表型敲除实验表明,组蛋白甲基转移酶Suv39h对于分化细胞中组蛋白H3K9甲基化以及随后S期基因启动子的抑制是必需的,但在循环细胞中并非如此。这些结果表明,终末分化时触发的E2F靶基因永久沉默机制不同于循环细胞中的瞬时抑制机制。最后,Suv39h缺失的成肌细胞无法表达早期或晚期肌肉分化标志物。因此,Suv39h适时进行的H3K9甲基化似乎是退出细胞周期并进入分化的控制开关的一部分。