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大肠杆菌rrnB操纵子中的tRNAGlu2基因是体外进行正确的核糖核酸酶III加工的先决条件。

The tRNAGlu2 gene in the rrnB operon of E. coli is a prerequisite for correct RNase III processing in vitro.

作者信息

Szymkowiak C, Reynolds R L, Chamberlin M J, Wagner R

机构信息

Max-Planck-Institut für Molekulare Genetik, Abteilung Wittmann, Berlin, FRG.

出版信息

Nucleic Acids Res. 1988 Aug 25;16(16):7885-99. doi: 10.1093/nar/16.16.7885.

Abstract

RNase III cleaves precursor 16S RNA and precursor 23S RNA from the ribosomal RNA transcript. In vitro transcription experiments, using plasmids with the rrnB operon truncated in the 16S RNA and with various deletions in the spacer tRNA region, showed that no matter what size of deletion if the tRNA gene was affected RNase III processing of 16S RNA became incomplete. In comparison to a control plasmid, where only the 16S RNA gene was truncated and that showed normal RNA processing, plasmids where the tRNA gene was deleted partially or totally either the 5' or the 3' end of 16S RNA was processed. This relation between RNase III processing and the 3-dimensional structure of tRNA suggests an interaction between RNase III and a tRNA processing enzyme most probably RNase P.

摘要

核糖核酸酶III从核糖体RNA转录本中切割前体16S RNA和前体23S RNA。体外转录实验使用了在16S RNA中截短rrnB操纵子且在间隔tRNA区域有各种缺失的质粒,结果表明,无论缺失大小如何,只要tRNA基因受到影响,核糖核酸酶III对16S RNA的加工就会变得不完全。与仅截短16S RNA基因且显示正常RNA加工的对照质粒相比,tRNA基因部分或全部缺失的质粒,16S RNA的5'端或3'端均未得到加工。核糖核酸酶III加工与tRNA三维结构之间的这种关系表明,核糖核酸酶III与一种tRNA加工酶(很可能是核糖核酸酶P)之间存在相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22fc/338498/a04ce83bc637/nar00158-0133-a.jpg

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