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转录调控需要高度保守的6S RNA结构。

A highly conserved 6S RNA structure is required for regulation of transcription.

作者信息

Trotochaud Amy E, Wassarman Karen M

机构信息

Department of Bacteriology, University of Wisconsin-Madison, 420 Henry Mall, Madison, Wisconsin 53706, USA.

出版信息

Nat Struct Mol Biol. 2005 Apr;12(4):313-9. doi: 10.1038/nsmb917. Epub 2005 Mar 27.

Abstract

6S RNA, a highly abundant noncoding RNA, regulates transcription through interaction with RNA polymerase in Escherichia coli. Computer searches identified 6S RNAs widely among gamma-proteobacteria. Biochemical approaches were required to identify more divergent 6S RNAs. Two Bacillus subtilis RNAs were found to interact with the housekeeping form of RNA polymerase, thereby establishing them as 6S RNAs. A third B. subtilis RNA was discovered with distinct RNA polymerase-binding activity. Phylogenetic comparison and analysis of mutant RNAs revealed that a conserved secondary structure containing a single-stranded central bulge within a highly double-stranded molecule was essential for 6S RNA function in vivo and in vitro. Reconstitution experiments established the marked specificity of 6S RNA interactions for sigma(70)-RNA polymerase, as well as the ability of 6S RNA to directly inhibit transcription. These data highlight the critical importance of structural characteristics for 6S RNA activity.

摘要

6S RNA是一种高度丰富的非编码RNA,它通过与大肠杆菌中的RNA聚合酶相互作用来调节转录。计算机搜索在γ-变形菌中广泛鉴定出6S RNA。需要采用生化方法来鉴定更多不同的6S RNA。发现两种枯草芽孢杆菌RNA与RNA聚合酶的管家形式相互作用,从而将它们确定为6S RNA。还发现了第三种具有独特RNA聚合酶结合活性的枯草芽孢杆菌RNA。对突变RNA的系统发育比较和分析表明,在高度双链分子中含有单链中央凸起的保守二级结构对于6S RNA在体内和体外的功能至关重要。重组实验确定了6S RNA与σ70-RNA聚合酶相互作用的显著特异性,以及6S RNA直接抑制转录的能力。这些数据突出了结构特征对6S RNA活性的至关重要性。

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