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首页> 外文期刊>Nucleic acids research >Chromosomal footprinting of transcriptionally active and inactive oocyte-type 5S RNA genes of Xenopus laevis
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Chromosomal footprinting of transcriptionally active and inactive oocyte-type 5S RNA genes of Xenopus laevis

机译:非洲爪蟾转录活性和非活性卵母细胞型5S RNA基因的染色体足迹

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The chromatin structure of the Xenopus oocyte-speciflc 5S rRNA genes was examined at high resolution in immature oocyte and somatic cell chromosomes by DNase I footprinting. On oocyte chromatin, where the genes are active, the cleavage preferences over the entire gene region showed a periodic pattern of sensitivity and were dramatically different from the patterns obtained with deproteinized DNA or somatic cell chromatin. Further, the normal binding site for TFIIIA over the internal promoter region was preferentially sensitive to cleavage, indicating that TFIIIA was not bound inthe manner predicted by in vitro experiments. In somatic cell chromatin, the oocyte-type 5S genes displayed a cleavage pattern largely similar to deproteinized DNA suggesting the absence of positioned nucleosomes on these inactive genes, although the presence of uncharacterized repressor complexes could not be ruled out. These data are discussed in terms of potential forms of the chromatin structure and alternative mechanisms of oocyte-type gene activation.
机译:通过DNase I足迹法在未成熟的卵母细胞和体细胞染色体中高分辨率检测了非洲爪蟾卵母细胞特异性5S rRNA基因的染色质结构。在具有基因活性的卵母细胞染色质上,对整个基因区域的切割偏好显示出周期性的敏感性模式,与脱蛋白的DNA或体细胞染色质获得的模式显着不同。此外,内部启动子区域上方的TFIIIA的正常结合位点对切割优先敏感,表明TFIIIA没有以体外实验预测的方式结合。在体细胞染色质中,卵母细胞型5S基因显示的裂解模式与脱蛋白的DNA相似,这表明在这些无活性的基因上不存在定位的核小体,尽管不能排除未鉴定的阻遏物复合物的存在。这些数据讨论了染色质结构的潜在形式和卵母细胞型基因激活的替代机制。

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