A changing paradigm of transcriptional memory propagation through mitosis
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Molecular Biology
Link
http://www.nature.com/articles/s41580-018-0077-z.pdf
Reference86 articles.
1. Naumova, N. et al. Organization of the mitotic chromosome. Science 342, 948–953 (2013).
2. Hsiung, C. C. et al. A hyperactive transcriptional state marks genome reactivation at the mitosis-G1 transition. Genes Dev. 30, 1423–1439 (2016). This study, using ChIP–seq and Capture-C in murine erythroblasts in mitosis and during mitotic exit, shows a large spike in Pol II binding and a re-formation of enhancer–promoter loops approximately 90 minutes into mitotic exit.
3. Martinez-Balbas, M. A., Dey, A., Rabindran, S. K., Ozato, K. & Wu, C. Displacement of sequence-specific transcription factors from mitotic chromatin. Cell 83, 29–38 (1995).
4. Guo, J., Turek, M. E. & Price, D. H. Regulation of RNA polymerase II termination by phosphorylation of Gdown1. J. Biol. Chem. 289, 12657–12665 (2014).
5. Dovat, S. et al. A common mechanism for mitotic inactivation of C2H2 zinc finger DNA-binding domains. Genes Dev. 16, 2985–2990 (2002).
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