Pirouz Mehdi, Rahjouei Ali, Shamsi Farnaz, Eckermann Kolja Neil, Salinas-Riester Gabriela, Pommerenke Claudia, Kessel Michael
a Department of Molecular Cell Biology ; Max Planck Institute for Biophysical Chemistry ; Goettingen ; Germany.
Cell Cycle. 2015;14(10):1596-610. doi: 10.1080/15384101.2015.1026485.
The induction and maintenance of pluripotency requires the expression of several core factors at appropriate levels (Oct4, Sox2, Klf4, Prdm14). A subset of these proteins (Oct4, Sox2, Prdm14) also plays crucial roles for the establishment of primordial germ cells (PGCs). Here we demonstrate that the Mad2l2 (MAD2B, Rev7) gene product is not only required by PGCs, but also by pluripotent embryonic stem cells (ESCs), depending on the growth conditions. Mad2l2(-/-) ESCs were unstable in LIF/serum medium, and differentiated into primitive endoderm. However, they could be stably propagated using small molecule inhibitors of MAPK signaling. Several components of the MAPK cascade were up- or downregulated even in undifferentiated Mad2l2(-/-) ESCs. Global levels of repressive histone H3 variants were increased in mutant ESCs, and the epigenetic signatures on pluripotency-, primitive endoderm-, and MAPK-related loci differed. Thus, H3K9me2 repressed the Nanog promoter, while the promoter of Gata4 lost H3K27me3 and became de-repressed in LIF/serum condition. Promoters associated with genes involved in MAPK signaling also showed misregulation of these histone marks. Such epigenetic modifications could be indirect consequences of mutating Mad2l2. However, our previous observations suggested the histone methyltransferases as direct (G9a) or indirect (Ezh2) targets of Mad2l2. In effect, the intricate balance necessary for pluripotency becomes perturbed in the absence of Mad2l2.
多能性的诱导和维持需要几个核心因子在适当水平表达(Oct4、Sox2、Klf4、Prdm14)。这些蛋白质的一个子集(Oct4、Sox2、Prdm14)在原始生殖细胞(PGC)的建立中也起着关键作用。在这里,我们证明Mad2l2(MAD2B、Rev7)基因产物不仅是PGC所必需的,而且在不同生长条件下,也是多能胚胎干细胞(ESC)所必需的。Mad2l2(-/-)ESC在LIF/血清培养基中不稳定,并分化为原始内胚层。然而,使用MAPK信号通路的小分子抑制剂可以使其稳定增殖。即使在未分化的Mad2l2(-/-)ESC中,MAPK级联反应的几个组分也有上调或下调。突变ESC中抑制性组蛋白H3变体的整体水平升高,多能性、原始内胚层和MAPK相关位点的表观遗传特征也有所不同。因此,H3K9me2抑制Nanog启动子,而Gata4启动子在LIF/血清条件下失去H3K27me3并去抑制。与MAPK信号通路相关基因的启动子也显示出这些组蛋白标记的调控异常。这种表观遗传修饰可能是Mad2l2突变的间接后果。然而,我们之前的观察表明组蛋白甲基转移酶是Mad2l2的直接(G9a)或间接(Ezh2)靶点。实际上,在没有Mad2l2的情况下,多能性所需的复杂平衡被打破。