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基于蛋白质工程和冷冻电镜技术对环形基因调控蛋白TRAP中近邻协同作用的结构基础研究

Structural basis of nearest-neighbor cooperativity in the ring-shaped gene regulatory protein TRAP from protein engineering and cryo-EM.

作者信息

Li Weicheng, Yang Haoyun, Stachowski Kye, Norris Andrew S, Lichtenthal Katie, Kelly Skyler, Gollnick Paul, Wysocki Vicki H, Foster Mark P

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210.

Center for RNA Biology, The Ohio State University, Columbus, OH 43210.

出版信息

Proc Natl Acad Sci U S A. 2025 Jan 7;122(1):e2409030121. doi: 10.1073/pnas.2409030121. Epub 2024 Dec 30.

Abstract

The homo-dodecameric ring-shaped RNA binding attenuation protein (TRAP) from binds up to twelve tryptophan ligands (Trp) and becomes activated to bind a specific sequence in the 5' leader region of the operon mRNA, thereby downregulating biosynthesis of Trp. Thermodynamic measurements of Trp binding have revealed a range of cooperative behavior for different TRAP variants, even if the averaged apparent affinities for Trp have been found to be similar. Proximity between the ligand binding sites, and the ligand-coupled disorder-to-order transition has implicated nearest-neighbor interactions in cooperativity. To establish a solid basis for describing nearest-neighbor cooperativity in TRAP, we engineered variants constructed with two subunits connected by a flexible linker (dTRAP). We mutated the binding sites of alternating protomers such that only every other site was competent for Trp binding (WT-Mut dTRAP). Ligand binding monitored by NMR, calorimetry, and native mass spectrometry revealed strong cooperativity in dTRAP containing adjacent binding-competent sites, but a severe binding defect when the wild-type sites were separated by mutated sites. Cryo-EM experiments of dTRAP in its ligand-free apo state, and both dTRAP and WT-Mut dTRAP in the presence of Trp, revealed progressive stabilization of loops that gate the Trp binding site and participate in RNA binding. These studies provide important insights into the thermodynamic and structural basis for the observed ligand binding cooperativity in TRAP. Such insights can be useful for understanding allosteric control networks and for the development of those with defined ligand sensitivity and regulatory control.

摘要

来自[具体来源未给出]的同型十二聚体环状RNA结合衰减蛋白(TRAP)可结合多达十二个色氨酸配体(Trp)并被激活,从而结合操纵子mRNA 5'前导区的特定序列,进而下调色氨酸的生物合成。对Trp结合的热力学测量揭示了不同TRAP变体的一系列协同行为,即使已发现它们对Trp的平均表观亲和力相似。配体结合位点之间的距离以及配体偶联的无序到有序转变暗示了协同作用中的近邻相互作用。为了为描述TRAP中的近邻协同作用建立坚实的基础,我们设计了由柔性接头连接两个亚基构建的变体(dTRAP)。我们对交替原体的结合位点进行突变,使得只有每隔一个位点能够结合Trp(WT-Mut dTRAP)。通过核磁共振、量热法和原生质谱监测的配体结合表明,在含有相邻结合活性位点的dTRAP中存在强协同作用,但当野生型位点被突变位点隔开时存在严重的结合缺陷。dTRAP在其无配体的脱辅基状态下以及在Trp存在下的dTRAP和WT-Mut dTRAP的冷冻电镜实验揭示了控制Trp结合位点并参与RNA结合的环的逐步稳定。这些研究为TRAP中观察到的配体结合协同作用的热力学和结构基础提供了重要见解。此类见解对于理解变构控制网络以及开发具有明确配体敏感性和调控控制的网络可能有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3ef/11725872/9eaa5f66d3a8/pnas.2409030121fig01.jpg

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