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首页> 外文期刊>Chromosoma >Changes in chromatin structure correlate with transcriptional activity of nucleolar rDNA in polytene chromosomes
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Changes in chromatin structure correlate with transcriptional activity of nucleolar rDNA in polytene chromosomes

机译:染色质结构的变化与多烯染色体中核仁rDNA的转录活性相关。

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Ribosomal DNA genes (rDNA) are found in tandem arrays of hundreds of repeated genes, but only a fraction of these genes are actively transcribed. The regulatory mechanism controlling the transition between active and inactive rDNA in higher eukaryotes is vital for cell survival. Here, we show that the nucleolus from Drosophila salivary gland cells contains two levels of chromatin organization reflecting differences in transcriptional activity: Decondensed chromatin is highly occupied with TATA-box-binding protein (TBP), phosphorylated H3S10, and acetylated H3K14, suggesting that rDNA in decondensed nucleolar areas is actively transcribed. Condensed chromatin lacks TBP, phosphorylated H3S10, or acetylated H3K14 and is enriched in the rDNA retrotransposons R1 and R2. The data show that R1 and R2 retrotransposons are not actively transcribed in salivary glands and may lead to the epigenetic silencing of flanking rDNA genes and that the silencing mechanisms of these sequences might be partially independent of heterochromatin formation by methylation of histone H3 at lysine 9 and binding of heterochromatin protein 1. Communicated by I. Grummt
机译:在成百上千个重复基因的串联阵列中发现了核糖体DNA基因(rDNA),但这些基因中只有一小部分被主动转录。控制高等真核生物中有活性和无活性rDNA之间过渡的调控机制对于细胞存活至关重要。在这里,我们显示果蝇唾液腺细胞的核仁包含两个水平的染色质组织,反映了转录活性的差异:缩合染色质高度被TATA盒结合蛋白(TBP),磷酸化的H3S10和乙酰化的H3K14占据,这表明rDNA在缩合核仁区域中的转录活跃。浓缩的染色质缺乏TBP,磷酸化的H3S10或乙酰化的H3K14,并且富含rDNA逆转座子R1和R2。数据显示,R1和R2逆转座子在唾液腺中未活跃转录,可能导致侧翼rDNA基因的表观遗传沉默,而且这些序列的沉默机制可能部分不依赖赖氨酸9和9处组蛋白H3甲基化的异染色质形成。异染色质蛋白的结合1.通过I. Grummt通信

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