首页> 美国卫生研究院文献>Nucleic Acids Research >Both the 5S rRNA gene and the AT-rich flanks of xenopus laevis oocyte-type 5S rDNA repeat are required for histone H1-dependent repression of transcription of pol III-type genes in in vitro reconstituted chromatin.
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Both the 5S rRNA gene and the AT-rich flanks of xenopus laevis oocyte-type 5S rDNA repeat are required for histone H1-dependent repression of transcription of pol III-type genes in in vitro reconstituted chromatin.

机译:5S rRNA基因和非洲爪蟾卵母细胞型5S rDNA重复序列的富含AT的侧翼都是组蛋白H1依赖性抑制体外重组染色质中pol III型基因转录所必需的。

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摘要

Incorporation of somatic histone H1 into chromatin during embryogenesis of Xenopus laevis results in repression of transcription of the oocyte- but not the somatic-type 5S rRNA genes. We showed earlier that a similar effect of the H1 observed in chromatin reconstituted on circular plasmids in vitro depends on its binding to the AT-rich flanks of the oocyte-type 5S rRNA gene. H1 binding results in stabilization of nucleosomes within the oocyte 5S rDNA repeat comprising the 5S rRNA gene with flanks and in reorganization of chromatin on the entire plasmid DNA. Performing in vitro transcription on reconstituted minichromosome templates carrying the oocyte 5S rRNA gene placed in different arrangements and at different distances from the AT-rich flanks, we now establish that the above effects of H1 observed upon its binding to the AT-rich sequences are absolutely dependent on the presence of the 120 bp oocyte 5S rRNA gene in its native position within the flanks. We also find that with the intact oocyte 5S rDNA repeat, the binding of H1 results in repression of transcription of both pol III- and pol II-type genes and that the transcriptionally inactive chromatin state spreads over a distance of at least a few nucleosomes.
机译:在非洲爪蟾胚胎发生过程中将体细胞组蛋白H1掺入染色质可抑制卵母细胞型而非5S rRNA基因的转录。较早的研究表明,在体外重组于环形质粒的染色质中观察到的H1的类似作用取决于其与卵母细胞型5S rRNA基因富含AT的侧翼的结合。 H1结合可导致卵母细胞5S rDNA重复序列(包含5S rRNA基因与侧翼)中核小体的稳定,并导致整个质粒DNA上的染色质重组。对携带卵母细胞5S rRNA基因的重组微染色体模板进行体外转录,该模板以不同的排列方式与距富含AT的侧翼不同距离排列,我们现在确定,H1结合至富含AT的序列时观察到的上述作用是绝对的取决于在侧翼内其自然位置存在120 bp卵母细胞5S rRNA基因。我们还发现,利用完整的卵母细胞5S rDNA重复序列,H1的结合导致pol III型和pol II型基因的转录均受到抑制,并且转录无活性的染色质状态遍布至少几个核小体的距离。

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