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核小体组装与转录因子组合对卵黄蛋白原B1启动子的转录增强作用:体外剖析

Transcriptional potentiation of the vitellogenin B1 promoter by a combination of both nucleosome assembly and transcription factors: an in vitro dissection.

作者信息

Corthésy B, Léonnard P, Wahli W

机构信息

Institut de Biologie Animale, Université de Lausanne, Switzerland.

出版信息

Mol Cell Biol. 1990 Aug;10(8):3926-33. doi: 10.1128/mcb.10.8.3926-3933.1990.

Abstract

The Xenopus laevis vitellogenin B1 promoter was assembled into nucleosomes in an oocyte extract. Subsequent RNA polymerase II-dependent transcription from these DNA templates fully reconstituted in chromatin in a HeLa nuclear extract was increased 50-fold compared with naked DNA. Remarkably, under specific conditions, production of a high level of transcripts occurred at very low DNA (1 ng/microliter) and HeLa nuclear protein (1.6 micrograms/microliters) concentrations. When partially reconstituted templates were used, transcription efficiency was intermediate between that of fully reconstituted and naked DNA. These results implicate chromatin in the process of the transcriptional activation observed. Depletion from the oocyte assembly extract of an NF-I-like factor which binds in the promoter region upstream of the TATA box (-114 to -101) or deletion from the promoter of the region interacting with this factor reduced the transcriptional efficiency of the assembled templates by a factor of 5, but transcription of these templates was still 10 times higher than that of naked DNA. Together, these results indicate that the NF-I-like factor participates in the very efficient transcriptional potentiation of the vitellogenin B1 promoter which occurs during nucleosome assembly.

摘要

非洲爪蟾卵黄原蛋白B1启动子在卵母细胞提取物中组装成核小体。随后,在HeLa细胞核提取物中,这些在染色质中完全重构的DNA模板上依赖RNA聚合酶II的转录与裸露DNA相比增加了50倍。值得注意的是,在特定条件下,在非常低的DNA(1 ng/微升)和HeLa核蛋白(1.6微克/微升)浓度下产生了高水平的转录本。当使用部分重构的模板时,转录效率介于完全重构和裸露DNA之间。这些结果表明染色质参与了所观察到的转录激活过程。从卵母细胞组装提取物中去除在TATA盒上游启动子区域(-114至-101)结合的类NF-I因子,或从启动子中删除与该因子相互作用的区域,会使组装模板的转录效率降低5倍,但这些模板的转录仍比裸露DNA高10倍。总之,这些结果表明类NF-I因子参与了在核小体组装过程中发生的卵黄原蛋白B1启动子的高效转录增强作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b90/360903/ce557aeec762/molcellb00044-0082-a.jpg

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