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SETDB1-Mediated Cell Fate Transition between 2C-Like and Pluripotent States

机译:SetDB1介导的2C形和多能态之间的介导的细胞命运过渡

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Known as a histone H3K9 methyltransferase, SETDB1 is essential for embryonic development and pluripotent inner cell mass (ICM) establishment. However, its function in pluripotency regulation remains elusive. In this study, we find that under the “ground state” of pluripotency with two inhibitors (2i) of the MEK and GSK3 pathways, Setdb1 -knockout fails to induce trophectoderm (TE) differentiation as in serum/LIF (SL), indicating that TE fate restriction is not the direct target of SETDB1. In?both conditions, Setdb1 -knockout activates a group of genes targeted by SETDB1-mediated H3K9 methylation, including Dux . Notably, Dux is indispensable for the reactivation of 2C-like state genes upon Setdb1 deficiency, delineating the?mechanistic role of SETDB1 in totipotency restriction. Furthermore, Setdb1 -null ESCs maintain pluripotent marker (e.g., Nanog ) expression in the 2i condition. This?“ground state” Setdb1 -null population undergoes rapid cell death by activating Ripk3 and, subsequently, RIPK1/RIPK3-dependent necroptosis. These results reveal the essential role of Setdb1 between totipotency and pluripotency transition.
机译:被称为组蛋白H3K9甲基转移酶,SetdB1对于胚胎发育和多能内细胞质量(ICM)建立至关重要。然而,它在多能性规则中的功能仍然是难以捉摸的。在这项研究中,我们发现,在MEK和GSK3途径的两种抑制剂(2I)的“地态”下,SetDB1-Knout无法诱导血清/ LiF(SL)中的肾病胚胎(TE)分化,表明这一点TE命运限制不是SetDB1的直接目标。在这种情况下,SetDB1-Knocout激活由SetDB1介导的H3K9甲基化靶向的一组基因,包括Dux。值得注意的是,Dux对于在SetDB1缺陷时重新激活2C样状态基因,划定了SetDB1在Totipotency限制中的机械作用。此外,SetDB1 -Null escs在2I条件下维持多能标记(例如,纳米)表达。这个?“基地”SetdB1 -Null群体通过激活RIPK3来经历快速的细胞死亡,随后,RIPK1 / RIPK3依赖性的坏死。这些结果揭示了SetDB1在Totipotency和多能转换之间的基本作用。

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