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基础组蛋白H1(0)基因表达激活的分子基础。

Molecular basis of the activation of basal histone H1(0) gene expression.

作者信息

Khochbin S, Lawrence J J

机构信息

Laboratoire de Biologie Moléculaire du Cycle Cellulaire, INSERM U309, CEA-Département de Biologie Moléculaire et Structurale, Centre d'Etudes Nucléaire de Grenoble, France.

出版信息

Nucleic Acids Res. 1994 Aug 11;22(15):2887-93. doi: 10.1093/nar/22.15.2887.

Abstract

Histone H1(0) is encoded by a gene that is expressed only in cells committed to differentiation. We have previously cloned the Xenopus laevis H1(0) gene and studied elements involved in the regulation of its expression in transfected Xenopus laevis A6 cells, and in microinjected embryos. In this work, in order to understand the basis of the action of these elements, we used an A6 cell nuclear extract and showed that the H1(0) promoter is able to direct efficient in vitro transcription, which is highly dependent on a functional TATA box. However, in contrast to what we observed in vivo, in transfected A6 cells, the in vitro transcription was independent of major regulatory elements, defined in vivo. We then used this in vitro system to reconstitute H1(0) gene regulation. The creation of a repressive environment by the addition of purified histone H1 to the in vitro transcription system allowed us to obtain transcription dependent on the integrity of the regulatory elements. Investigating the basis of this regulation we found that protein-DNA interaction on the proximal promoter region was dependent on the integrity of proximal elements, and moreover the distal regulatory element, the UCE, was able to modulate this interaction. We conclude that the role of these regulatory elements is to maintain the basal TATA-dependent transcription of H1(0) under repressive condition: i.e., H1-mediated repression of transcription, or chromatin assembly in general.

摘要

组蛋白H1(0)由一个仅在致力于分化的细胞中表达的基因编码。我们之前克隆了非洲爪蟾的H1(0)基因,并研究了参与其在转染的非洲爪蟾A6细胞以及显微注射胚胎中表达调控的元件。在这项工作中,为了理解这些元件作用的基础,我们使用了A6细胞核提取物,并表明H1(0)启动子能够指导高效的体外转录,这高度依赖于一个功能性的TATA框。然而,与我们在体内观察到的情况相反,在转染的A6细胞中,体外转录独立于在体内定义的主要调控元件。然后我们使用这个体外系统来重建H1(0)基因调控。通过向体外转录系统中添加纯化的组蛋白H1来创建一个抑制环境,使我们能够获得依赖于调控元件完整性的转录。研究这种调控的基础时,我们发现近端启动子区域上的蛋白质-DNA相互作用依赖于近端元件的完整性,此外,远端调控元件UCE能够调节这种相互作用。我们得出结论,这些调控元件的作用是在抑制条件下维持H1(0)的基础TATA依赖性转录:即H1介导的转录抑制或一般的染色质组装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae1/310251/6c6e26ce70ab/nar00039-0035-a.jpg

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