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Probing Protein Ligand Interactions by Automated Hydrogen/Deuterium Exchange Mass Spectrometry

机译:通过自动氢/氘交换质谱探测蛋白质配体相互作用

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Amide hydrogen/deuterium exchange is a powerful biophysical technique for probing changes in protein dynamics induced by ligand interaction. The inherent low throughput of the technology has limited its impact on drug screening and lead optimization. Automation increases the throughput of H/D exchange to make it compatible with drug discovery efforts. Here we describe the first fully automated H/D exchange system that provides highly reproducible H/D exchange kinetics from 130 ms to 24 h. Throughput is maximized by parallel sample processing, and the system can run H/D exchange assays in triplicate without user intervention. We demonstrate the utility of this system to differentiate structural perturbations in the ligand-binding domain (LBD) of the nuclear receptor PPAR(gamma) induced upon binding a full agonist and a partial agonist. PPAR(gamma) is the target of glitazones, drugs used for treatment of insulin resistance associated with type II diabetes. Recently it has been shown that partial agonists of PPAR(gamma) have insulin sensitization properties while lacking several adverse effects associated with full agonist drugs. To further examine the mechanism of partial agonist activation of PPAR(gamma), we extended our studies to the analysis of ligand interactions with the heterodimeric complex of PPAR(gamma)/RXR(alpha) LBDs. To facilitate analysis of H/D exchange of large protein complexes, we performed the experiment with a 14.5-T Fourier transform ion cyclotron resonance mass spectrometer capable of measuring mass with accuracy in the ppb range.
机译:酰胺氢/氘交换是一种强大的生物物理技术,用于探测由配体相互作用引起的蛋白质动力学变化。该技术固有的低通量限制了其对药物筛选和铅优化的影响。自动化提高了H / D交换的吞吐量,使其与药物发现工作兼容。在这里,我们描述了第一个全自动H / D交换系统,该系统在130毫秒至24小时内可提供高度可重复的H / D交换动力学。通过并行样品处理,可以最大程度地提高通量,并且该系统可以一式三份运行H / D交换测定,而无需用户干预。我们证明了该系统的用途,以区分结合完全激动剂和部分激动剂后诱导的核受体PPAR(γ)的配体结合域(LBD)中的结构扰动。 PPAR(γ)是格列酮的靶标,格列酮是用于治疗与II型糖尿病相关的胰岛素抵抗的药物。最近显示,PPARγ的部分激动剂具有胰岛素增敏特性,而缺乏与完全激动剂相关的几种不良反应。为了进一步检查PPARγ的部分激动剂激活的机制,我们将研究扩展到了与PPARγ/RXRαLBD异二聚体复合物的配体相互作用的分析。为了便于分析大型蛋白质复合物的H / D交换,我们使用14.5-T傅里叶变换离子回旋共振质谱仪进行了实验,该质谱仪能够以ppb范围内的精度进行质量测量。

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