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进化排除的核糖开关变体的组成型调节活性。

Constitutive regulatory activity of an evolutionarily excluded riboswitch variant.

机构信息

Groupe ARN/RNA Group, Département de Biologie, Faculté des Sciences, Université de Sherbrooke, Québec J1K 2R1, Canada.

出版信息

J Biol Chem. 2011 Aug 5;286(31):27406-15. doi: 10.1074/jbc.M111.229047. Epub 2011 Jun 15.

Abstract

The exquisite specificity of the adenine-responsive riboswitch toward its cognate metabolite has been shown to arise from the formation of a Watson-Crick interaction between the adenine ligand and residue U65. A recent crystal structure of a U65C adenine aptamer variant has provided a rationale for the phylogenetic conservation observed at position 39 for purine aptamers. The G39-C65 variant adopts a compact ligand-free structure in which G39 is accommodated by the ligand binding site and is base-paired to the cytosine at position 65. Here, we demonstrate using a combination of biochemical and biophysical techniques that the G39-C65 base pair not only severely impairs ligand binding but also disrupts the functioning of the riboswitch in vivo by constitutively activating gene expression. Folding studies using single-molecule FRET revealed that the G39-C65 variant displays a low level of dynamic heterogeneity, a feature reminiscent of ligand-bound wild-type complexes. A restricted conformational freedom together with an ability to significantly fold in monovalent ions are exclusive to the G39-C65 variant. This work provides a mechanistic framework to rationalize the evolutionary exclusion of certain nucleotide combinations in favor of sequences that preserve ligand binding and gene regulation functionalities.

摘要

腺嘌呤响应型核糖开关对其同源代谢物的高度特异性来源于腺嘌呤配体与 U65 残基之间形成的 Watson-Crick 相互作用。最近一个 U65C 腺嘌呤适体变体的晶体结构为嘌呤适体在 39 位观察到的系统发育保守性提供了一个基本原理。G39-C65 变体采用了一种紧凑的无配体结构,其中 G39 被配体结合位点容纳,并与位于 65 位的胞嘧啶碱基配对。在这里,我们使用生化和生物物理技术的组合证明,G39-C65 碱基对不仅严重损害了配体结合,而且通过持续激活基因表达,在体内破坏了核糖开关的功能。使用单分子 FRET 的折叠研究表明,G39-C65 变体显示出低水平的动态异质性,这一特征类似于配体结合的野生型复合物。受限的构象自由度以及在单价离子中能够显著折叠的能力是 G39-C65 变体所特有的。这项工作提供了一个机制框架,用于合理化某些核苷酸组合的进化排除,以有利于保留配体结合和基因调控功能的序列。

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