Flora Pooja, Li Meng Yen, Zhou Yudong, Mercédes Maria, Zheng Xiang Yu, Galbo Phillip M, Zheng Deyou, Ezhkova Elena
bioRxiv. 2024 Oct 11:2024.10.10.617646. doi: 10.1101/2024.10.10.617646.
The transition of stem cells from a quiescent state to an active state is a finely tuned process that requires the dismantling of the quiescence program and the establishment of a cell cycle-promoting transcriptional landscape. Whether epigenetic processes control stem cell states to promote the regeneration of adult tissues remains elusive. In this study, we show that a repressive histone modification, H2AK119ub, is dynamic between quiescent and active hair follicle stem cells (HFSCs) in the adult murine skin. Ablation of H2AK119ub in HFSCs leads to impaired quiescence leading to premature activation and an eventual exhaustion of HFSC pool. Transcriptional and chromatin studies revealed that H2AK119ub directly represses a proliferation promoting transcriptional program in the HFSCs to preserve quiescence. Lastly, we identify that the inhibitory FGF signaling produced by the hair follicle niche keratinocytes maintains H2AK119ub in quiescent HFSCs. Together, these findings reveal that a repressive histone mark, H2AK119ub, is under the dynamic regulation of inhibitory niche signaling to prevent the untimely establishment of an activated state to preserve SC function and longevity.
干细胞从静止状态向活跃状态的转变是一个精细调控的过程,需要拆解静止程序并建立促进细胞周期的转录格局。表观遗传过程是否控制干细胞状态以促进成年组织的再生仍不清楚。在本研究中,我们表明一种抑制性组蛋白修饰H2AK119ub在成年小鼠皮肤中静止和活跃的毛囊干细胞(HFSCs)之间是动态变化的。HFSCs中H2AK119ub的缺失导致静止受损,导致过早激活并最终耗尽HFSC库。转录和染色质研究表明,H2AK119ub直接抑制HFSCs中促进增殖的转录程序以维持静止。最后,我们确定毛囊微环境角质形成细胞产生的抑制性FGF信号在静止的HFSCs中维持H2AK119ub。总之,这些发现揭示了一种抑制性组蛋白标记H2AK119ub受抑制性微环境信号的动态调控,以防止过早建立激活状态,从而维持干细胞功能和寿命。