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瞬时受体电位阳离子通道亚家族M成员8(TRPM8)蛋白动力学与配体结构和细胞功能相关。

TRPM8 protein dynamics correlates with ligand structure and cellular function.

作者信息

Mebrat Mubark D, Luu Dustin D, Hilton Jacob K, Kim Minjoo, Parrott Kaitlyn, Cherry Brian R, Levitus Marcia, Journigan V Blair, Van Horn Wade D

机构信息

School of Molecular Sciences, Arizona State University, Tempe, AZ 85281, United States.

The Biodesign Institute Center for Personalized Diagnostics, Arizona State University, Tempe, AZ 85281, United States.

出版信息

bioRxiv. 2025 May 15:2025.05.13.653789. doi: 10.1101/2025.05.13.653789.

Abstract

Protein dynamics have emerged as a key feature associated with function in various systems. Here, NMR-based studies coupled with computational cheminformatics and cellular function are leveraged to identify a relationship between the human cold and menthol receptor TRPM8 dynamics, chemical structure, and cellular potency. TRPM8 is a validated target for a variety of pain indications but generally has been clinically limited by on-target side effects impacting thermosensing and thermoregulation. This study shows that cheminformatic analysis of a TRPM8 regulating small molecule ligand library correlates with cellular function. Electrophysiology studies further validate the relationship and show a correlation between chemical structure and functional features such as compound potency. Solution NMR studies of the TRPM8 voltage sensing-like domain, which houses the canonical menthol ligand binding site, show that ligand binding conformationally selects NMR-detected TRPM8 dynamics in a manner that quantitatively correlates with chemical structure. The relationship between chemical structure and protein dynamics can be used predictively, where a chemical structure is predictive of dynamics in a latent reduced dimensionality space. Moreover, the robustness of the conformational selection of the dynamic ensemble is evaluated by varying related and divergent chemotypes, signal-to-noise sensitivity, and sample bias. Taken together, this study identifies that protein dynamics can serve as a quantifiable bridge between chemical structure and cellular function, which has implications for drug discovery in difficult systems.

摘要

蛋白质动力学已成为各种系统中与功能相关的关键特征。在此,基于核磁共振(NMR)的研究与计算化学信息学和细胞功能相结合,以确定人类冷觉和薄荷醇受体TRPM8的动力学、化学结构和细胞活性之间的关系。TRPM8是多种疼痛适应症的有效靶点,但在临床上通常受到影响温度感知和体温调节的靶向副作用的限制。这项研究表明,对TRPM8调节小分子配体库的化学信息学分析与细胞功能相关。电生理学研究进一步验证了这种关系,并表明化学结构与诸如化合物活性等功能特征之间存在相关性。对包含典型薄荷醇配体结合位点的TRPM8电压感应样结构域的溶液核磁共振研究表明,配体结合以与化学结构定量相关的方式在构象上选择核磁共振检测到的TRPM8动力学。化学结构与蛋白质动力学之间的关系可用于预测,其中化学结构可在潜在的降维空间中预测动力学。此外,通过改变相关和不同的化学类型、信噪比灵敏度和样本偏差来评估动态集合的构象选择的稳健性。综上所述,这项研究确定蛋白质动力学可以作为化学结构和细胞功能之间的可量化桥梁,这对困难系统中的药物发现具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea10/12132250/082458bf87c0/nihpp-2025.05.13.653789v1-f0002.jpg

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