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本文引用的文献

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An autoinhibitory effect of the homothorax domain of Meis2.Meis2 同源结构域的自动抑制效应。
FEBS J. 2010 Jun;277(12):2584-97. doi: 10.1111/j.1742-464X.2010.07668.x.
2
Kruppel-like factor 4 inhibits epithelial-to-mesenchymal transition through regulation of E-cadherin gene expression.Kruppel 样因子 4 通过调节 E-钙黏蛋白基因的表达抑制上皮间质转化。
J Biol Chem. 2010 May 28;285(22):16854-63. doi: 10.1074/jbc.M110.114546. Epub 2010 Mar 31.
3
Genetic and epigenetic inactivation of Kruppel-like factor 4 in medulloblastoma.Kruppel 样因子 4 在髓母细胞瘤中的遗传和表观遗传失活。
Neoplasia. 2010 Jan;12(1):20-7. doi: 10.1593/neo.91122.
4
Pbx1 functions in distinct regulatory networks to pattern the great arteries and cardiac outflow tract.Pbx1在不同的调控网络中发挥作用,以塑造大动脉和心脏流出道的形态。
Development. 2008 Nov;135(21):3577-86. doi: 10.1242/dev.022350.
5
Roles of Krüpel-like factor 4 in normal homeostasis, cancer and stem cells.Krüppel样因子4在正常稳态、癌症和干细胞中的作用。
Acta Biochim Biophys Sin (Shanghai). 2008 Jul;40(7):554-64. doi: 10.1111/j.1745-7270.2008.00439.x.
6
Cytosolic sequestration of Prep1 influences early stages of T cell development.Prep1的胞质隔离影响T细胞发育的早期阶段。
PLoS One. 2008 Jun 18;3(6):e2424. doi: 10.1371/journal.pone.0002424.
7
Directly reprogrammed fibroblasts show global epigenetic remodeling and widespread tissue contribution.直接重编程的成纤维细胞表现出整体表观遗传重塑和广泛的组织贡献。
Cell Stem Cell. 2007 Jun 7;1(1):55-70. doi: 10.1016/j.stem.2007.05.014.
8
Genome-wide identification of Smad/Foxh1 targets reveals a role for Foxh1 in retinoic acid regulation and forebrain development.全基因组范围内对Smad/Foxh1靶标的鉴定揭示了Foxh1在视黄酸调节和前脑发育中的作用。
Dev Cell. 2008 Mar;14(3):411-23. doi: 10.1016/j.devcel.2008.01.004.
9
PBX proteins: much more than Hox cofactors.PBX蛋白:远不止是Hox辅因子。
Int J Dev Biol. 2008;52(1):9-20. doi: 10.1387/ijdb.072304al.
10
Meis1 is an essential and rate-limiting regulator of MLL leukemia stem cell potential.Meis1是MLL白血病干细胞潜能的关键且限速调节因子。
Genes Dev. 2007 Nov 1;21(21):2762-74. doi: 10.1101/gad.1602107. Epub 2007 Oct 17.

Klf4、Meis2 和 Pbx1 的协同转录激活。

Cooperative transcriptional activation by Klf4, Meis2, and Pbx1.

机构信息

Department of Biochemistry and Molecular Genetics and Center for Cell Signaling, University of Virginia, Charlottesville, Virginia 22908, USA.

出版信息

Mol Cell Biol. 2011 Sep;31(18):3723-33. doi: 10.1128/MCB.01456-10. Epub 2011 Jul 11.

DOI:10.1128/MCB.01456-10
PMID:21746878
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3165729/
Abstract

The Kruppel-like factor Klf4 is implicated in tumorigenesis and maintaining stem cell pluripotency, and Klf4 can both activate and repress gene expression. We show that the Pbx1 and Meis2 homeodomain proteins interact with Klf4 and can be recruited to DNA elements comprising a Klf4 site or GC box, with adjacent Meis and Pbx sites. Meis2d and Pbx1a activate expression of p15(Ink4a) and E-cadherin, dependent on the Meis2d transcriptional activation domain. In HepG2 cells, reducing expression of endogenous Meis2 or Pbx1 decreases p15 gene expression and increases the number of cells entering S phase. Although DNA binding by all three proteins contributes to full cooperative activation, the sequence requirements for binding by Meis2 and Pbx1 are variable. In the E-cadherin promoter, a Pbx-like site is required for full activation, whereas in the p15 promoter, the Klf4 site appears to play the major role. Through a bioinformatics search we identified additional genes with conserved binding sites for Klf4, Meis2, and Pbx1 and show that at least some of these genes can be activated cooperatively by Klf4 and Meis2/Pbx1. We suggest a model in which genes with Klf4 sites can be cooperatively activated by Meis2/Pbx1 and Klf4, dependent primarily on recruitment by Klf4. This provides a mechanism to modulate transcriptional regulation by the multifunctional Klf4 transcription factor.

摘要

Krüppel 样因子 Klf4 与肿瘤发生和维持干细胞多能性有关,它既能激活又能抑制基因表达。我们表明 Pbx1 和 Meis2 同源结构域蛋白与 Klf4 相互作用,并能被募集到包含 Klf4 位点或 GC 盒的 DNA 元件上,同时还有相邻的 Meis 和 Pbx 位点。Meis2d 和 Pbx1a 依赖于 Meis2d 的转录激活结构域激活 p15(Ink4a)和 E-cadherin 的表达。在 HepG2 细胞中,降低内源性 Meis2 或 Pbx1 的表达会降低 p15 基因的表达,并增加进入 S 期的细胞数量。尽管所有三种蛋白的 DNA 结合都有助于完全协同激活,但 Meis2 和 Pbx1 的结合序列要求是可变的。在 E-cadherin 启动子中,需要 Pbx 样位点才能实现完全激活,而在 p15 启动子中,Klf4 位点似乎起主要作用。通过生物信息学搜索,我们鉴定出了具有 Klf4、Meis2 和 Pbx1 保守结合位点的其他基因,并表明至少其中一些基因可以被 Klf4 和 Meis2/Pbx1 协同激活。我们提出了一个模型,即具有 Klf4 位点的基因可以通过 Meis2/Pbx1 和 Klf4 协同激活,主要依赖于 Klf4 的募集。这为多功能 Klf4 转录因子的转录调控提供了一种机制。