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解析 S100B 变构信号:肽靶标 TRTK-12 作为一个集合调节剂的作用。

Deciphering S100B Allosteric Signaling: The Role of a Peptide Target, TRTK-12, as an Ensemble Modulator.

机构信息

Biophysics Graduate Program, University of Maryland, College Park, Maryland 20742, United States.

Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, United States.

出版信息

J Chem Inf Model. 2024 Apr 22;64(8):3477-3487. doi: 10.1021/acs.jcim.4c00116. Epub 2024 Apr 11.

Abstract

Allostery is an essential biological phenomenon in which perturbation at one site in a biomolecule elicits a functional response at a distal location(s). It is integral to biological processes, such as cellular signaling, metabolism, and transcription regulation. Understanding allostery is also crucial for rational drug discovery. In this work, we focus on an allosteric S100B protein that belongs to the S100 class of EF-hand Ca-binding proteins. The Ca-binding affinity of S100B is modulated allosterically by TRTK-12 peptide binding 25 Å away from the Ca-binding site. We investigated S100B allostery by carrying out nuclear magnetic resonance (NMR) measurements along with microsecond-long molecular dynamics (MD) simulations on S100B/Ca with/without TRTK-12 at different NaCl salt concentrations. NMR HSQC results show that TRTK-12 reorganizes how S100B/Ca responds to different salt concentrations at both orthosteric and allosteric sites. The MD data suggest that TRTK-12 breaks the dynamic aromatic and hydrogen-bond interactions (not observed in X-ray crystallographic structures) between the hinge/helix and Ca-binding EF-hand loop of the two subunits in the homodimeric protein. This triggers rearrangement in the protein network architectures and leads to allosteric communication. Finally, computational studies of S100B at distinct ionic strengths suggest that ligand-bound species are more robust to the changing environment relative to the S100B/Ca complex.

摘要

变构作用是一种基本的生物学现象,其中生物分子中一个位置的扰动会在远端位置引发功能响应。它是细胞信号转导、代谢和转录调控等生物过程的组成部分。理解变构作用对于合理的药物发现也至关重要。在这项工作中,我们专注于一种变构 S100B 蛋白,它属于 S100 类 EF 手 Ca 结合蛋白。S100B 的 Ca 结合亲和力通过与 Ca 结合位点 25 Å 远的 TRTK-12 肽结合而变构调节。我们通过在不同 NaCl 盐浓度下对 S100B/Ca 进行核磁共振(NMR)测量以及微秒长的分子动力学(MD)模拟来研究 S100B 的变构作用,同时进行了带有/不带 TRTK-12 的实验。NMR HSQC 结果表明,TRTK-12 重新组织了 S100B/Ca 对正位和变构位不同盐浓度的反应。MD 数据表明,TRTK-12 打破了二聚体蛋白中铰链/螺旋和 Ca 结合 EF 手环之间的动态芳香族和氢键相互作用(在 X 射线晶体结构中未观察到)。这引发了蛋白质网络架构的重新排列,并导致变构通讯。最后,对不同离子强度下的 S100B 的计算研究表明,与 S100B/Ca 复合物相比,配体结合的物种对不断变化的环境更具鲁棒性。

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