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本文引用的文献

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IkappaB kinase alpha and p65/RelA contribute to optimal epidermal growth factor-induced c-fos gene expression independent of IkappaBalpha degradation.IκB激酶α和p65/RelA有助于表皮生长因子诱导的最佳c-fos基因表达,且不依赖于IκBα的降解。
J Biol Chem. 2004 Jul 23;279(30):31183-9. doi: 10.1074/jbc.M404380200. Epub 2004 May 20.
2
Distribution of NF-kappaB-binding sites across human chromosome 22.NF-κB结合位点在人类22号染色体上的分布。
Proc Natl Acad Sci U S A. 2003 Oct 14;100(21):12247-52. doi: 10.1073/pnas.2135255100. Epub 2003 Oct 3.
3
Cytoplasmic IkappaBalpha increases NF-kappaB-independent transcription through binding to histone deacetylase (HDAC) 1 and HDAC3.细胞质中的IκBα通过与组蛋白去乙酰化酶(HDAC)1和HDAC3结合增加非NF-κB依赖性转录。
J Biol Chem. 2003 Nov 21;278(47):46541-8. doi: 10.1074/jbc.M306381200. Epub 2003 Sep 12.
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A nucleosomal function for IkappaB kinase-alpha in NF-kappaB-dependent gene expression.IκB激酶α在NF-κB依赖性基因表达中的核小体功能
Nature. 2003 Jun 5;423(6940):659-63. doi: 10.1038/nature01648.
5
Histone H3 phosphorylation by IKK-alpha is critical for cytokine-induced gene expression.IKK-α介导的组蛋白H3磷酸化对于细胞因子诱导的基因表达至关重要。
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IkappaBalpha and p65 regulate the cytoplasmic shuttling of nuclear corepressors: cross-talk between Notch and NFkappaB pathways.IκBα和p65调节核共抑制因子的细胞质穿梭:Notch和NFκB信号通路之间的相互作用
Mol Biol Cell. 2003 Feb;14(2):491-502. doi: 10.1091/mbc.e02-07-0404.
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Regulation of lipocalin-type prostaglandin D synthase gene expression by Hes-1 through E-box and interleukin-1 beta via two NF-kappa B elements in rat leptomeningeal cells.在大鼠软脑膜细胞中,Hes-1通过E盒以及白细胞介素-1β经由两个核因子κB元件调控脂质运载蛋白型前列腺素D合成酶基因的表达。
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IκBα募集至hes1启动子与转录抑制相关。

Recruitment of IkappaBalpha to the hes1 promoter is associated with transcriptional repression.

作者信息

Aguilera Cristina, Hoya-Arias Ruben, Haegeman Guy, Espinosa Lluís, Bigas Anna

机构信息

Centre Oncologia Molecular, Institut d'Investigació Biomèdica de Bellvitge-Institut de Recerca Oncologica, Barcelona 08907, Spain.

出版信息

Proc Natl Acad Sci U S A. 2004 Nov 23;101(47):16537-42. doi: 10.1073/pnas.0404429101. Epub 2004 Nov 9.

DOI:10.1073/pnas.0404429101
PMID:15536134
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC534509/
Abstract

The NF-kappaB pathway plays a pivotal role in proliferation, differentiation, apoptosis, and immune responses in mammals. The NF-kappaB inhibitor, IkappaB, has classically been characterized for its ability to sequester NF-kappaB transcription factors in the cytoplasm. Nevertheless, a nuclear fraction of IkappaBalpha has consistently been detected and associated with repression of nuclear NF-kappaB. Now we show that IkappaBalpha physically associates with different repression elements such as nuclear corepressors and histone acetyltransferases and deacetylases (HDACs). More remarkably, chromatin immunoprecipitation experiments demonstrate that IkappaBalpha is recruited to the promoter regions of the Notch-target gene, hes1, together with HDAC1 and -5, whereas we did not detect IkappaBalpha associated with classical NF-kappaB target genes such as IL6 and RANTES. TNF-alpha treatment results in a temporary release of IkappaBalpha from the hes1 promoter that correlates with increased histone acetylation and transcriptional activation. In addition, we demonstrate that both IkappaB kinase-alpha and -beta are simultaneously recruited to the hes1 promoter in response to TNF-alpha, coinciding with a maximum of IkappaBalpha release and gene activation. Moreover, TNF-alpha-dependent histone H3 acetylation, release of IkappaBalpha from the hes1 promoter, and hes1 mRNA synthesis are affected in IKK-alpha(-/-) mouse embryonic fibroblasts. We propose that IkappaBalpha plays a previously undescribed role in regulating the recruitment of repression elements to specific promoters. Recruitment of IKKs to the nucleus in response to TNF-alpha may induce chromatin-associated IkappaBalpha release and gene activation. These findings provide additional insight in the cross-talk between NF-kappaB and other signaling pathways.

摘要

核因子κB(NF-κB)信号通路在哺乳动物的增殖、分化、凋亡及免疫反应中发挥着关键作用。NF-κB抑制剂IκB,其经典作用是将NF-κB转录因子隔离于细胞质中。然而,一直以来都能检测到IκBα的一个核部分,且它与核内NF-κB的抑制相关。现在我们发现,IκBα与不同的抑制元件存在物理联系,如核共抑制因子以及组蛋白乙酰转移酶和去乙酰化酶(HDAC)。更值得注意的是,染色质免疫沉淀实验表明,IκBα与HDAC1和HDAC5一起被招募至Notch靶基因hes1的启动子区域,而我们未检测到IκBα与诸如IL6和RANTES等经典NF-κB靶基因相关。肿瘤坏死因子α(TNF-α)处理导致IκBα从hes1启动子暂时释放,这与组蛋白乙酰化增加及转录激活相关。此外,我们证明,响应TNF-α时,IκB激酶α和β同时被招募至hes1启动子,这与IκBα的最大释放及基因激活同时发生。而且,在IKK-α基因敲除(-/-)的小鼠胚胎成纤维细胞中,TNF-α依赖的组蛋白H3乙酰化、IκBα从hes1启动子的释放以及hes1 mRNA合成均受到影响。我们提出,IκBα在调控抑制元件向特定启动子的招募中发挥了此前未被描述的作用。响应TNF-α时IKK被招募至细胞核可能诱导与染色质相关的IκBα释放及基因激活。这些发现为NF-κB与其他信号通路之间的相互作用提供了更多见解。