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Quantification of Small Molecule–Protein Interactionsusing FRET between Tryptophan and the Pacific Blue Fluorophore

机译:小分子-蛋白质相互作用的定量在色氨酸和太平洋蓝色荧光团之间使用FRET

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摘要

We report a new method to quantify the affinity of small molecules for proteins. This method is based on Förster resonance energy transfer (FRET) between endogenous tryptophan (Trp) residues and the coumarin-derived fluorophore Pacific Blue (PB). Tryptophan residues are frequently found in proteins near ligand-binding sites, making this approach potentially applicable to a wide range of systems. To improve access to PB, we developed a scalable multigram synthesis of this fluorophore, starting with inexpensive 2,3,4,5-tetrafluorobenzoic acid. This route was used to synthesize fluorescent derivatives of biotin, as well as lower affinity thiobiotin, iminobiotin, and imidazolidinethione analogues that bind the protein streptavidin. Compared with previously published FRET acceptors for tryptophan, PB proved to be superior in both sensitivity and efficiency. These unique properties of PB enabled direct quantification of dissociation constants (Kd) as well as competitive inhibition constants (Ki) in the micromolar to nanomolar range. In comparison to analogous binding studies using fluorescence polarization, fluorescence quenching, or fluorescence enhancement, affinities determinedusing Trp-FRET were more precise and accurate as validated using independentisothermal titration calorimetry studies. FRET between tryptophanand PB represents a new tool for the characterization of protein–ligandcomplexes.
机译:我们报告了一种量化小分子对蛋白质亲和力的新方法。该方法基于内源性色氨酸(Trp)残基与香豆素衍生的荧光团太平洋蓝(PB)之间的Förster共振能量转移(FRET)。色氨酸残基经常出现在配体结合位点附近的蛋白质中,这使得该方法可能适用于广泛的系统。为了提高获得PB的机会,我们开发了这种荧光团的可扩展的多谱图合成方法,从廉价的2,3,4,5-四氟苯甲酸开始。该途径用于合成生物素的荧光衍生物,以及结合蛋白链霉亲和素的较低亲和力的硫代生物素,亚氨基生物素和咪唑烷硫酮类似物。与以前发布的色氨酸FRET受体相比,PB在灵敏度和效率上均表现优异。 PB的这些独特特性使得能够直接定量解离常数(Kd)和竞争抑制常数(Ki)在微摩尔至纳摩尔范围内。与使用荧光偏振,荧光猝灭或荧光增强的类似结合研究相比,确定了亲和力经Trp-FRET验证,使用独立等温滴定量热法研究。色氨酸之间的FRETPB代表了表征蛋白质-配体的新工具复合体。

著录项

  • 期刊名称 ACS Omega
  • 作者单位
  • 年(卷),期 2016(1),6
  • 年度 2016
  • 页码 1266–1276
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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