Chelmicki Tomasz, Dündar Friederike, Turley Matthew James, Khanam Tasneem, Aktas Tugce, Ramírez Fidel, Gendrel Anne-Valerie, Wright Patrick Rudolf, Videm Pavankumar, Backofen Rolf, Heard Edith, Manke Thomas, Akhtar Asifa
Department of Chromatin Regulation, Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany Faculty of Biology, University of Freiburg, Freiburg, Germany.
Department of Chromatin Regulation, Max Planck Institute of Immunobiology and Epigenetics, Freiburg, Germany Faculty of Biology, University of Freiburg, Freiburg, Germany Bioinformatics Department, Max Planck Institute for Immunobiology and Epigenetics, Freiburg, Germany.
Elife. 2014 May 19;3:e02024. doi: 10.7554/eLife.02024.
Histone acetyl transferases (HATs) play distinct roles in many cellular processes and are frequently misregulated in cancers. Here, we study the regulatory potential of MYST1-(MOF)-containing MSL and NSL complexes in mouse embryonic stem cells (ESCs) and neuronal progenitors. We find that both complexes influence transcription by targeting promoters and TSS-distal enhancers. In contrast to flies, the MSL complex is not exclusively enriched on the X chromosome, yet it is crucial for mammalian X chromosome regulation as it specifically regulates Tsix, the major repressor of Xist lncRNA. MSL depletion leads to decreased Tsix expression, reduced REX1 recruitment, and consequently, enhanced accumulation of Xist and variable numbers of inactivated X chromosomes during early differentiation. The NSL complex provides additional, Tsix-independent repression of Xist by maintaining pluripotency. MSL and NSL complexes therefore act synergistically by using distinct pathways to ensure a fail-safe mechanism for the repression of X inactivation in ESCs.DOI: http://dx.doi.org/10.7554/eLife.02024.001.
组蛋白乙酰转移酶(HATs)在许多细胞过程中发挥着不同的作用,并且在癌症中经常发生调控异常。在此,我们研究了含有MYST1-(MOF)的MSL和NSL复合物在小鼠胚胎干细胞(ESCs)和神经祖细胞中的调控潜力。我们发现这两种复合物都通过靶向启动子和转录起始位点(TSS)远端增强子来影响转录。与果蝇不同,MSL复合物并非仅在X染色体上富集,但它对哺乳动物X染色体调控至关重要,因为它特异性地调控Xist lncRNA的主要抑制因子Tsix。MSL缺失导致Tsix表达降低、REX1募集减少,进而在早期分化过程中导致Xist积累增加以及可变数量的失活X染色体。NSL复合物通过维持多能性对Xist提供额外的、不依赖于Tsix的抑制作用。因此,MSL和NSL复合物通过不同途径协同作用,以确保一种安全机制来抑制ESCs中的X染色体失活。DOI: http://dx.doi.org/10.7554/eLife.02024.001