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一种金属感应调节性RNA的结构与机制

Structure and mechanism of a metal-sensing regulatory RNA.

作者信息

Dann Charles E, Wakeman Catherine A, Sieling Cecelia L, Baker Stephanie C, Irnov Irnov, Winkler Wade C

机构信息

Department of Biochemistry, The University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

Cell. 2007 Sep 7;130(5):878-92. doi: 10.1016/j.cell.2007.06.051.

Abstract

Organisms maintain the correct balance of intracellular metals primarily through metal-sensing proteins that control transport and storage of the target ion(s). Here, we reveal the basis of metal sensing and genetic control by a metalloregulatory RNA. Our data demonstrate that a previously uncharacterized orphan riboswitch, renamed the "M-box," is a divalent metal-sensing RNA involved in Mg(2+) homeostasis. A combination of genetic, biochemical, and biophysical techniques demonstrate that Mg(2+) induces a compacted tertiary architecture for M-box RNAs that regulates the accessibility of nucleotides involved in genetic control. Molecular details are provided by crystallographic structure determination of a Mg(2+)-bound M-box RNA. Given the distribution of this RNA element, it may constitute a common mode for bacterial metal ion regulation, and its discovery suggests the possibility of additional RNA-based metal sensors in modern and primordial organisms.

摘要

生物体主要通过控制目标离子运输和储存的金属感应蛋白来维持细胞内金属的正确平衡。在此,我们揭示了一种金属调节RNA进行金属感应和基因控制的基础。我们的数据表明,一种先前未被表征的孤儿核糖开关(重新命名为“M盒”)是一种参与镁离子稳态的二价金属感应RNA。遗传、生化和生物物理技术相结合表明,镁离子诱导M盒RNA形成紧密的三级结构,从而调节参与基因控制的核苷酸的可及性。结合镁离子的M盒RNA的晶体结构测定提供了分子细节。鉴于这种RNA元件的分布情况,它可能构成细菌金属离子调节的一种常见模式,其发现表明现代和原始生物中可能存在其他基于RNA的金属传感器。

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