Department of Stem Cell Biology, Centre for Organismal Studies, Heidelberg University, D-69120, Heidelberg, Germany.
Vienna Biocenter (VBC), Gregor Mendel Institute (GMI), Austrian Academy of Sciences, Dr. Bohr-Gasse 3, 1030, Vienna, Austria.
Nat Commun. 2019 Nov 8;10(1):5093. doi: 10.1038/s41467-019-13074-9.
To maintain the balance between long-term stem cell self-renewal and differentiation, dynamic signals need to be translated into spatially precise and temporally stable gene expression states. In the apical plant stem cell system, local accumulation of the small, highly mobile phytohormone auxin triggers differentiation while at the same time, pluripotent stem cells are maintained throughout the entire life-cycle. We find that stem cells are resistant to auxin mediated differentiation, but require low levels of signaling for their maintenance. We demonstrate that the WUSCHEL transcription factor confers this behavior by rheostatically controlling the auxin signaling and response pathway. Finally, we show that WUSCHEL acts via regulation of histone acetylation at target loci, including those with functions in the auxin pathway. Our results reveal an important mechanism that allows cells to differentially translate a potent and highly dynamic developmental signal into stable cell behavior with high spatial precision and temporal robustness.
为了维持长期干细胞自我更新和分化之间的平衡,动态信号需要被转化为空间上精确和时间上稳定的基因表达状态。在植物顶端干细胞系统中,小而高度移动的植物激素生长素的局部积累触发分化,同时多能干细胞在整个生命周期中得以维持。我们发现干细胞对生长素介导的分化具有抗性,但需要低水平的信号来维持其状态。我们证明 WUSCHEL 转录因子通过动态控制生长素信号转导和响应途径赋予了这种行为。最后,我们表明 WUSCHEL 通过调节目标基因座的组蛋白乙酰化来发挥作用,包括那些在生长素途径中具有功能的基因座。我们的研究结果揭示了一种重要的机制,使细胞能够将一种有效且高度动态的发育信号转化为具有高空间精度和时间鲁棒性的稳定细胞行为。