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2
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本文引用的文献

1
A Hopscotch-chromatin connection.一种跳房子游戏与染色质的联系。
Nat Genet. 2006 Sep;38(9):977-9. doi: 10.1038/ng0906-977.
2
JAK signaling globally counteracts heterochromatic gene silencing.JAK信号传导在整体上对抗异染色质基因沉默。
Nat Genet. 2006 Sep;38(9):1071-6. doi: 10.1038/ng1860. Epub 2006 Aug 6.
3
JAK/STAT signalling in Drosophila: insights into conserved regulatory and cellular functions.果蝇中的JAK/STAT信号传导:对保守调控和细胞功能的见解
Development. 2006 Jul;133(14):2605-16. doi: 10.1242/dev.02411.
4
Mutational analysis reveals separable DNA binding and trans-activation of Drosophila STAT92E.突变分析揭示了果蝇STAT92E可分离的DNA结合与反式激活作用。
Cell Signal. 2006 Jun;18(6):819-29. doi: 10.1016/j.cellsig.2005.07.006. Epub 2005 Aug 29.
5
STAT3 nuclear import is independent of tyrosine phosphorylation and mediated by importin-alpha3.信号转导及转录激活因子3(STAT3)的核输入不依赖于酪氨酸磷酸化,而是由输入蛋白α3介导。
Proc Natl Acad Sci U S A. 2005 Jun 7;102(23):8150-5. doi: 10.1073/pnas.0501643102. Epub 2005 May 26.
6
HP1 modulates the transcription of cell-cycle regulators in Drosophila melanogaster.异染色质蛋白1调节黑腹果蝇细胞周期调节因子的转录。
Nucleic Acids Res. 2005 May 19;33(9):2852-8. doi: 10.1093/nar/gki584. Print 2005.
7
cis-Acting determinants of heterochromatin formation on Drosophila melanogaster chromosome four.果蝇四号染色体上异染色质形成的顺式作用决定因素。
Mol Cell Biol. 2004 Sep;24(18):8210-20. doi: 10.1128/MCB.24.18.8210-8220.2004.
8
The STATs of cancer--new molecular targets come of age.癌症中的信号转导和转录激活因子——新的分子靶点走向成熟。
Nat Rev Cancer. 2004 Feb;4(2):97-105. doi: 10.1038/nrc1275.
9
Structural basis of HP1/PXVXL motif peptide interactions and HP1 localisation to heterochromatin.HP1与PXVXL基序肽相互作用以及HP1定位于异染色质的结构基础。
EMBO J. 2004 Feb 11;23(3):489-99. doi: 10.1038/sj.emboj.7600088. Epub 2004 Feb 5.
10
Patterns and functions of STAT activation during Drosophila embryogenesis.果蝇胚胎发育过程中STAT激活的模式与功能。
Mech Dev. 2003 Dec;120(12):1455-68. doi: 10.1016/j.mod.2003.09.004.

果蝇信号转导和转录激活因子(STAT)对于直接维持异染色质蛋白1(HP1)的定位和异染色质稳定性是必需的。

Drosophila STAT is required for directly maintaining HP1 localization and heterochromatin stability.

作者信息

Shi Song, Larson Kimberly, Guo Dongdong, Lim Su Jun, Dutta Pranabananda, Yan Shian-Jang, Li Willis X

机构信息

Department of Biomedical Genetics, University of Rochester Medical Center, Rochester, NY 14642, USA.

出版信息

Nat Cell Biol. 2008 Apr;10(4):489-96. doi: 10.1038/ncb1713. Epub 2008 Mar 16.

DOI:10.1038/ncb1713
PMID:18344984
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3083919/
Abstract

STAT (Signal transducer and activator of transcription) is a potent transcription factor and its aberrant activation by phosphorylation is associated with human cancers. We have shown previously that overactivation of JAK, which phosphorylates STAT, disrupts heterochromatin formation globally in Drosophila melanogaster. However, it remains unclear how this effect is mediated and whether STAT is involved. Here, we demonstrate that Drosophila STAT (STAT92E) is involved in controlling heterochromatin protein 1 (HP1) distribution and heterochromatin stability. We found, unexpectedly, that loss of STAT92E, had the same effects as overactivation of JAK in disrupting heterochromatin formation and heterochromatic gene silencing, whereas overexpression of STAT92E had the opposite effects. We have further shown that the unphosphorylated or 'transcriptionally inactive' form of STAT92E is localized on heterochromatin in association with HP1, and is required for stabilizing HP1 localization and histone H3 Lys 9 methylation (H3mK9) . However, activation by phosphorylation reduces heterochromatin-associated STAT92E, causing HP1 displacement and heterochromatin destabilization. Thus, reducing levels of unphosphorylated STAT92E, either by loss of STAT92E or increased phosphorylation, causes heterochromatin instability. These results suggest that activation of STAT by phosphorylation controls both access to chromatin and activity of the transcription machinery.

摘要

信号转导及转录激活因子(STAT)是一种强效转录因子,其通过磷酸化的异常激活与人类癌症相关。我们之前已经表明,使STAT磷酸化的JAK的过度激活会在黑腹果蝇中整体破坏异染色质的形成。然而,这种效应是如何介导的以及STAT是否参与其中仍不清楚。在这里,我们证明果蝇STAT(STAT92E)参与控制异染色质蛋白1(HP1)的分布和异染色质的稳定性。我们意外地发现,STAT92E的缺失在破坏异染色质形成和异染色质基因沉默方面与JAK的过度激活具有相同的效果,而STAT92E的过表达则产生相反的效果。我们进一步表明,未磷酸化或“转录无活性”形式的STAT92E与HP1一起定位于异染色质上,并且是稳定HP1定位和组蛋白H3赖氨酸9甲基化(H3mK9)所必需的。然而,磷酸化激活会减少与异染色质相关的STAT92E,导致HP1移位和异染色质不稳定。因此,通过STAT92E的缺失或磷酸化增加来降低未磷酸化STAT92E的水平会导致异染色质不稳定。这些结果表明,STAT通过磷酸化的激活既控制对染色质的 access 又控制转录机器的活性。 (注:原文中“access”可能有误,推测可能是“accessibility”,但按要求未修改。)