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NAP1的核小体组装活性被Alien增强。

The nucleosome assembly activity of NAP1 is enhanced by Alien.

作者信息

Eckey Maren, Hong Wei, Papaioannou Maria, Baniahmad Aria

机构信息

Institute of Human Genetics and Anthropology, Friedrich Schiller University, 07740 Jena, Germany.

出版信息

Mol Cell Biol. 2007 May;27(10):3557-68. doi: 10.1128/MCB.01106-06. Epub 2007 Mar 5.

Abstract

The assembly of nucleosomes into chromatin is essential for the compaction of DNA and inactivation of the DNA template to modulate and repress gene expression. The nucleosome assembly protein 1, NAP1, assembles nucleosomes independent of DNA synthesis and was shown to enhance coactivator-mediated gene expression, suggesting a role for NAP1 in transcriptional regulation. Here, we show that Alien, known to harbor characteristics of a corepressor of nuclear hormone receptors such as of the vitamin D receptor (VDR), binds in vivo and in vitro to NAP1 and modulates its activity by enhancing NAP1-mediated nucleosome assembly on DNA. Furthermore, Alien reduces the accessibility of the histones H3 and H4 for NAP1-promoted assembly reaction. This indicates that Alien sustains and reinforces the formation of nucleosomes. Employing deletion mutants of Alien suggests that different regions of Alien are involved in enhancement of NAP1-mediated nucleosome assembly and in inhibiting the accessibility of the histones H3 and H4. In addition, we provide evidence that Alien is associated with chromatin and with micrococcus nuclease-prepared nucleosome fractions and interacts with the histones H3 and H4. Furthermore, chromatin immunoprecipitation and reimmunoprecipitation experiments suggest that NAP1 and Alien localize to the endogenous CYP24 promoter in vivo, a VDR target gene. Based on these findings, we present here a novel pathway linking corepressor function with nucleosome assembly activity.

摘要

核小体组装成染色质对于DNA的压缩以及DNA模板的失活以调节和抑制基因表达至关重要。核小体组装蛋白1(NAP1)可独立于DNA合成来组装核小体,并且已证明它能增强共激活因子介导的基因表达,这表明NAP1在转录调控中发挥作用。在此,我们发现,已知具有核激素受体(如维生素D受体,VDR)共抑制因子特征的Alien,在体内和体外均能与NAP1结合,并通过增强NAP1介导的DNA上核小体组装来调节其活性。此外,Alien降低了组蛋白H3和H4对NAP1促进的组装反应的可及性。这表明Alien维持并加强了核小体的形成。利用Alien的缺失突变体表明,Alien的不同区域参与增强NAP1介导的核小体组装以及抑制组蛋白H3和H4的可及性。此外,我们提供证据表明Alien与染色质以及微球菌核酸酶制备的核小体组分相关,并与组蛋白H3和H4相互作用。此外,染色质免疫沉淀和再免疫沉淀实验表明,NAP1和Alien在体内定位于内源性CYP24启动子,这是一个VDR靶基因。基于这些发现,我们在此提出了一条将共抑制因子功能与核小体组装活性联系起来的新途径。

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