Cancer Initiation and Tumoral Cell Identity (CITI) Department. Cancer Research Centre of Lyon (CRCL) INSERM 1052, CNRS 5286, Université Claude Bernard Lyon I, Centre Léon Bérard, Lyon, France.
Institut Convergence Plascan, Lyon, France.
Nat Commun. 2023 Jan 23;14(1):356. doi: 10.1038/s41467-023-36037-7.
Embryonic stem cell (ESC) fate decisions are regulated by a complex circuitry that coordinates gene expression at multiple levels from chromatin to mRNA processing. Recently, ribosome biogenesis and translation have emerged as key pathways that efficiently control stem cell homeostasis, yet the underlying molecular mechanisms remain largely unknown. Here, we identified RSL24D1 as highly expressed in both mouse and human pluripotent stem cells. RSL24D1 is associated with nuclear pre-ribosomes and is required for the biogenesis of 60S subunits in mouse ESCs. Interestingly, RSL24D1 depletion significantly impairs global translation, particularly of key pluripotency factors and of components from the Polycomb Repressive Complex 2 (PRC2). While having a moderate impact on differentiation, RSL24D1 depletion significantly alters ESC self-renewal and lineage commitment choices. Altogether, these results demonstrate that RSL24D1-dependant ribosome biogenesis is both required to sustain the expression of pluripotent transcriptional programs and to silence PRC2-regulated developmental programs, which concertedly dictate ESC homeostasis.
胚胎干细胞 (ESC) 的命运决定受一个复杂的调控网络控制,该网络在从染色质到 mRNA 处理的多个层面上协调基因表达。最近,核糖体生物发生和翻译已成为有效控制干细胞内稳态的关键途径,但其潜在的分子机制在很大程度上仍不清楚。在这里,我们鉴定出 RSL24D1 在小鼠和人类多能干细胞中高度表达。RSL24D1 与核前核糖体相关联,并且是小鼠 ESC 中 60S 亚基生物发生所必需的。有趣的是,RSL24D1 的耗竭显着抑制了整体翻译,特别是关键多能性因子和 Polycomb 抑制复合物 2 (PRC2) 的组成部分。虽然对分化有适度的影响,但 RSL24D1 的耗竭显着改变了 ESC 的自我更新和谱系决定选择。总的来说,这些结果表明 RSL24D1 依赖性核糖体生物发生对于维持多能性转录程序的表达以及沉默 PRC2 调节的发育程序都是必需的,这共同决定了 ESC 的内稳态。