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FoxA1 先驱因子通过特异性和非特异性结合锚定有丝分裂染色体。

Bookmarking by specific and nonspecific binding of FoxA1 pioneer factor to mitotic chromosomes.

机构信息

Epigenetics Program, Department of Cell and Developmental Biology, University of Pennsylvania, Perelman School of Medicine, Smilow Center for Translation Research, Philadelphia, PA 19104, USA.

出版信息

Genes Dev. 2013 Feb 1;27(3):251-60. doi: 10.1101/gad.206458.112. Epub 2013 Jan 25.

Abstract

While most transcription factors exit the chromatin during mitosis and the genome becomes silent, a subset of factors remains and "bookmarks" genes for rapid reactivation as cells progress through the cell cycle. However, it is unknown whether such bookmarking factors bind to chromatin similarly in mitosis and how different binding capacities among them relate to function. We compared a diverse set of transcription factors involved in liver differentiation and found markedly different extents of mitotic chromosome binding. Among them, the pioneer factor FoxA1 exhibits the greatest extent of mitotic chromosome binding. Genomically, ~15% of the FoxA1 interphase target sites are bound in mitosis, including at genes that are important for liver differentiation. Biophysical, genome mapping, and mutagenesis studies of FoxA1 reveals two different modes of binding to mitotic chromatin. Specific binding in mitosis occurs at sites that continue to be bound from interphase. Nonspecific binding in mitosis occurs across the chromosome due to the intrinsic chromatin affinity of FoxA1. Both specific and nonspecific binding contribute to timely reactivation of target genes post-mitosis. These studies reveal an unexpected diversity in the mechanisms by which transcription factors help retain cell identity during mitosis.

摘要

虽然大多数转录因子在有丝分裂期间离开染色质,基因组沉默,但一部分因子仍然存在,并在细胞周期中“标记”基因,以便快速重新激活。然而,目前尚不清楚这些书签因子在有丝分裂中是否以类似的方式结合到染色质上,以及它们之间不同的结合能力与功能有何关系。我们比较了一组不同的参与肝分化的转录因子,发现它们在有丝分裂染色体结合方面有明显不同的程度。其中,先驱因子 FoxA1 表现出最大程度的有丝分裂染色体结合。在基因组上,约 15%的 FoxA1 间期间靶位点在有丝分裂中被结合,包括在肝脏分化中重要的基因。对 FoxA1 的生物物理、基因组作图和突变研究揭示了两种不同的有丝分裂染色质结合模式。在有丝分裂中发生特异性结合的部位是从间期间继续被结合的部位。由于 FoxA1 固有的染色质亲和力,在有丝分裂中发生非特异性结合。特异性结合和非特异性结合都有助于有丝分裂后靶基因的及时重新激活。这些研究揭示了转录因子在有丝分裂过程中帮助维持细胞身份的机制存在出乎意料的多样性。

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