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糖皮质激素反应性增强子处可及染色质的性质

Nature of the accessible chromatin at a glucocorticoid-responsive enhancer.

作者信息

Flavin Michelle, Cappabianca Lucia, Kress Clémence, Thomassin Hélène, Grange Thierry

机构信息

Institut Jacques Monod du CNRS, Universités Paris 6-7, Tour 43, 2 Place Jussieu, 75251 Paris Cedex 05, France.

出版信息

Mol Cell Biol. 2004 Sep;24(18):7891-901. doi: 10.1128/MCB.24.18.7891-7901.2004.

Abstract

To gain a better understanding of the nature of active chromatin in mammals, we have characterized in living cells the various chromatin modification events triggered by the glucocorticoid receptor (GR) at the rat tyrosine aminotransferase gene. GR promotes a local remodeling at a glucocorticoid-responsive unit (GRU) located 2.5 kb upstream of the transcription start site, creating nuclease hypersensitivity that encompasses 450 bp of DNA. Nucleosomes at the GRU occupy multiple frames that are remodeled without nucleosome repositioning, showing that nucleosome positioning is not the key determinant of chromatin accessibility at this locus. Remodeling affects nucleosomes and adjacent linker sequences, enhancing accessibility at both regions. This is associated with decreased interaction of both the linker histone H1 and the core histone H3 with DNA. Thus, our results indicate that nucleosome and linker histone removal rather than nucleosome repositioning is associated with GR-triggered accessibility. Interestingly, GR induces hyperacetylation of histones H3 and H4, but this is not sufficient either for remodeling or for transcriptional activation. Finally, our data favor the coexistence of several chromatin states within the population, which may account for the previously encountered difficulties in characterizing unambiguously the active chromatin structure in living cells.

摘要

为了更好地理解哺乳动物中活性染色质的本质,我们在活细胞中对糖皮质激素受体(GR)在大鼠酪氨酸转氨酶基因上触发的各种染色质修饰事件进行了表征。GR在转录起始位点上游2.5 kb处的糖皮质激素反应元件(GRU)上促进局部重塑,产生覆盖450 bp DNA的核酸酶超敏性。GRU处的核小体占据多个框架,这些框架在不进行核小体重新定位的情况下被重塑,表明核小体定位不是该位点染色质可及性的关键决定因素。重塑影响核小体和相邻的连接序列,增强两个区域的可及性。这与连接组蛋白H1和核心组蛋白H3与DNA的相互作用减少有关。因此,我们的结果表明,核小体和连接组蛋白的去除而非核小体的重新定位与GR触发的可及性相关。有趣的是,GR诱导组蛋白H3和H4的高度乙酰化,但这对于重塑或转录激活均不足够。最后,我们的数据支持群体中几种染色质状态的共存,这可能解释了先前在明确表征活细胞中活性染色质结构时遇到的困难。

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