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通过 NMR 定量测定微秒至毫秒级蛋白质动力学来研究变构基因调控的机制。

Mechanisms of allosteric gene regulation by NMR quantification of microsecond-millisecond protein dynamics.

机构信息

Biophysics Program, Ohio State University, 484 West 12th Avenue, Columbus, OH 43210, USA.

出版信息

J Mol Biol. 2012 Jan 13;415(2):372-81. doi: 10.1016/j.jmb.2011.11.019. Epub 2011 Nov 15.

Abstract

The trp RNA-binding attenuation protein (TRAP) is a paradigmatic allosteric protein that regulates the tryptophan biosynthetic genes associated with the trp operon in bacilli. The ring-shaped 11-mer TRAP is activated for recognition of a specific trp-mRNA target by binding up to 11 tryptophan molecules. To characterize the mechanisms of tryptophan-induced TRAP activation, we have performed methyl relaxation dispersion (MRD) nuclear magnetic resonance (NMR) experiments that probe the time-dependent structure of TRAP in the microsecond-to-millisecond "chemical exchange" time window. We find significant side chain flexibility localized to the RNA and tryptophan binding sites of the apo protein and that these dynamics are dramatically reduced upon ligand binding. Analysis of the MRD NMR data provides insights into the structural nature of transiently populated conformations sampled in solution by apo TRAP. The MRD data are inconsistent with global two-state exchange, indicating that conformational sampling in apo TRAP is asynchronous. These findings imply a temporally heterogeneous population of structures that are incompatible with RNA binding and substantiate the study of TRAP as a paradigm for probing and understanding essential dynamics in allosteric, regulatory proteins.

摘要

色氨酸 RNA 结合衰减蛋白(TRAP)是一种典范的变构蛋白,它调节与芽孢杆菌中 trp 操纵子相关的色氨酸生物合成基因。环形的 11 聚体 TRAP 通过结合多达 11 个色氨酸分子而被激活,以识别特定的 trp-mRNA 靶标。为了表征色氨酸诱导的 TRAP 激活的机制,我们进行了甲基弛豫分散(MRD)核磁共振(NMR)实验,该实验探测了在微秒到毫秒的“化学交换”时间窗口中 TRAP 的时变结构。我们发现,apo 蛋白的 RNA 和色氨酸结合位点存在局部化的显著侧链灵活性,并且这些动力学在配体结合时大大降低。对 MRD NMR 数据的分析提供了对 apo TRAP 在溶液中通过瞬态占据构象进行采样的结构性质的深入了解。MRD 数据与全局二态交换不一致,表明 apo TRAP 中的构象采样是异步的。这些发现意味着存在与 RNA 结合不兼容的、具有时间异质性的结构群体,这支持了将 TRAP 作为研究变构、调节蛋白中基本动力学的范例的研究。

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