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果蝇无细胞系统中截短核糖体DNA模板的准确转录

Accurate transcription of truncated ribosomal DNA templates in a Drosophila cell-free system.

作者信息

Kohorn B D, Rae P M

出版信息

Proc Natl Acad Sci U S A. 1982 Mar;79(5):1501-5. doi: 10.1073/pnas.79.5.1501.

Abstract

An extract of Drosophila melanogaster Kc cells is shown to give specific and accurate transcription of truncated segments of cloned D. melanogaster ribosomal DNA (rDNA). When clones are digested with restriction enzymes so that the initiation site is flanked by 0.3 kilobase (kb) of nontranscribed spacer and greater than 0.4 kb of external transcribed spacer, RNA polymerase I activity in the extract parallels in vivo rRNA synthesis in selection of the coding strand of template and the site of transcription initiation. When greater than 0.3 kb of the nontranscribed spacer is contiguous with transcribed spacer, in vitro initiations evidently also occur in repeated sequences adjacent to the site of in vivo initiation; when less than or equal to 0.4 kb of the external transcribed spacer is present in a segment, expected transcripts are heterogeneous in length or not detectable. Transcription in the cell-free system requires the specific addition of D. melanogaster rDNA: neither D. virilis rDNA, vector plasmid, nor clones of D. melanogaster genes that are transcribed in vivo by RNA polymerases II and III serve as templates in the system. Drosophila rDNA units that have an interruption in the 28S rRNA coding region are not transcribed in vivo, but restriction digests of a recombinant phage DNA that contains such a unit are active as template for in vitro rDNA transcription.

摘要

果蝇Kc细胞提取物可对克隆的果蝇核糖体DNA(rDNA)截短片段进行特异性且准确的转录。当用限制酶消化克隆,使得起始位点两侧分别有0.3千碱基(kb)的非转录间隔区和大于0.4 kb的外部转录间隔区时,提取物中的RNA聚合酶I活性在模板编码链的选择和转录起始位点方面与体内rRNA合成情况相似。当大于0.3 kb的非转录间隔区与转录间隔区相邻时,体外起始显然也会在体内起始位点附近的重复序列中发生;当片段中存在小于或等于0.4 kb的外部转录间隔区时,预期的转录本长度不均一或无法检测到。无细胞系统中的转录需要特异性添加果蝇rDNA:果蝇virilis rDNA、载体质粒,以及在体内由RNA聚合酶II和III转录的果蝇基因克隆均不能作为该系统的模板。在28S rRNA编码区有中断的果蝇rDNA单位在体内不被转录,但含有此类单位的重组噬菌体DNA的限制酶消化产物作为体外rDNA转录的模板具有活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/178e/346002/8cdbeee45e4f/pnas00444-0137-a.jpg

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