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枯草芽孢杆菌 tyrS T 盒先导 RNA 的 K 环和 Specifier 环结构域的溶液结构。

Solution structure of the K-turn and Specifier Loop domains from the Bacillus subtilis tyrS T-box leader RNA.

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, TX 77251-1892, USA.

出版信息

J Mol Biol. 2011 Apr 22;408(1):99-117. doi: 10.1016/j.jmb.2011.02.014. Epub 2011 Feb 17.

Abstract

In Gram-positive bacteria, the RNA transcripts of many amino acid biosynthetic and aminoacyl tRNA synthetase genes contain 5' untranslated regions, or leader RNAs, that function as riboswitches. These T-box riboswitches bind cognate tRNA molecules and regulate gene expression by a transcription attenuation mechanism. The Specifier Loop domain of the leader RNA contains nucleotides that pair with nucleotides in the tRNA anticodon loop and is flanked on one side by a kink-turn (K-turn), or GA, sequence motif. We have determined the solution NMR structure of the K-turn sequence element within the context of the Specifier Loop domain. The K-turn sequence motif has several noncanonical base pairs typical of K-turn structures but adopts an extended conformation. The Specifier Loop domain contains a loop E structural motif, and the single-strand Specifier nucleotides stack with their Watson-Crick edges displaced toward the minor groove. Mg(2+) leads to a significant bending of the helix axis at the base of the Specifier Loop domain, but does not alter the K-turn. Isothermal titration calorimetry indicates that the K-turn sequence causes a small enhancement of the interaction between the tRNA anticodon arm and the Specifier Loop domain. One possibility is that the K-turn structure is formed and stabilized when tRNA binds the T-box riboswitch and interacts with Stem I and the antiterminator helix. This motif in turn anchors the orientation of Stem I relative to the 3' half of the leader RNA, further stabilizing the tRNA-T box complex.

摘要

在革兰氏阳性菌中,许多氨基酸生物合成和氨酰 tRNA 合成酶基因的 RNA 转录物含有 5'非翻译区(或称为前导 RNA),这些前导 RNA 作为核糖开关发挥作用。这些 T 盒核糖开关可以结合同源 tRNA 分子,并通过转录衰减机制调节基因表达。前导 RNA 的 Specifier Loop 结构域包含与 tRNA 反密码子环配对的核苷酸,并在一侧由一个扭曲 - 转折(K-turn)或 GA 序列基序侧翼。我们已经确定了前导 RNA 的 Specifier Loop 结构域中 K-turn 序列元件的溶液 NMR 结构。K-turn 序列基序具有几个典型的 K-turn 结构的非典型碱基对,但采用扩展构象。Specifier Loop 结构域包含一个 Loop E 结构基序,单链的 Specifier 核苷酸与其 Watson-Crick 边缘的位移朝向小沟堆叠。Mg(2+)导致 Specifier Loop 结构域底部的螺旋轴发生显著弯曲,但不改变 K-turn。等温滴定量热法表明,K-turn 序列会导致 tRNA 反密码臂与 Specifier Loop 结构域之间的相互作用略有增强。一种可能性是,当 tRNA 结合 T 盒核糖开关并与 Stem I 和终止子反转酶螺旋相互作用时,形成并稳定 K-turn 结构。这个基序反过来又将 Stem I 的方向锚定在前导 RNA 的 3' 半部分,进一步稳定 tRNA-T 盒复合物。

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