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与甘氨酰-tRNA 复合物中抗终止 glyQS T 盒调节因子的分子包膜和原子模型

Molecular envelope and atomic model of an anti-terminated glyQS T-box regulator in complex with tRNAGly.

作者信息

Chetnani Bhaskar, Mondragón Alfonso

机构信息

Department of Molecular Biosciences, Northwestern University, 2205 Tech Drive, Evanston, IL 60208, USA.

出版信息

Nucleic Acids Res. 2017 Jul 27;45(13):8079-8090. doi: 10.1093/nar/gkx451.

Abstract

A T-box regulator or riboswitch actively monitors the levels of charged/uncharged tRNA and participates in amino acid homeostasis by regulating genes involved in their utilization or biosynthesis. It has an aptamer domain for cognate tRNA recognition and an expression platform to sense the charge state and modulate gene expression. These two conserved domains are connected by a variable linker that harbors additional secondary structural elements, such as Stem III. The structural basis for specific tRNA binding is known, but the structural basis for charge sensing and the role of other elements remains elusive. To gain new structural insights on the T-box mechanism, a molecular envelope was calculated from small angle X-ray scattering data for the Bacillus subtilis glyQS T-box riboswitch in complex with an uncharged tRNAGly. A structural model of an anti-terminated glyQS T-box in complex with its cognate tRNAGly was derived based on the molecular envelope. It shows the location and relative orientation of various secondary structural elements. The model was validated by comparing the envelopes of the wild-type complex and two variants. The structural model suggests that in addition to a possible regulatory role, Stem III could aid in preferential stabilization of the T-box anti-terminated state allowing read-through of regulated genes.

摘要

一个T-box调节因子或核糖开关可积极监测带电荷/不带电荷的tRNA水平,并通过调控参与其利用或生物合成的基因来参与氨基酸稳态。它具有一个用于识别同源tRNA的适体结构域和一个用于感知电荷状态并调节基因表达的表达平台。这两个保守结构域由一个可变连接子相连,该连接子含有额外的二级结构元件,如茎环III。特定tRNA结合的结构基础已为人所知,但电荷感应的结构基础以及其他元件的作用仍不清楚。为了获得关于T-box机制的新结构见解,从小角X射线散射数据计算出了与未带电荷的tRNAGly形成复合物的枯草芽孢杆菌glyQS T-box核糖开关的分子轮廓。基于该分子轮廓推导出了与同源tRNAGly形成复合物的抗终止glyQS T-box的结构模型。它显示了各种二级结构元件的位置和相对取向。通过比较野生型复合物和两个变体的轮廓对该模型进行了验证。该结构模型表明,除了可能的调节作用外,茎环III可能有助于优先稳定T-box的抗终止状态,从而允许受调控基因的通读。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f2/5570125/d49b5eb80bf4/gkx451fig1.jpg

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