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双向光开关拮抗剂工具包的合成与表征用于实时 GPCR 光药理学。

Synthesis and Characterization of a Bidirectional Photoswitchable Antagonist Toolbox for Real-Time GPCR Photopharmacology.

机构信息

Division of Medicinal Chemistry, Amsterdam Institute for Molecules, Medicines and Systems, Faculty of Science , Vrije Universiteit Amsterdam , De Boelelaan 1108 , 1081 HZ Amsterdam , The Netherlands.

出版信息

J Am Chem Soc. 2018 Mar 28;140(12):4232-4243. doi: 10.1021/jacs.7b11422. Epub 2018 Mar 14.

Abstract

Noninvasive methods to modulate G protein-coupled receptors (GPCRs) with temporal and spatial precision are in great demand. Photopharmacology uses photons to control in situ the biological properties of photoswitchable small-molecule ligands, which bodes well for chemical biological precision approaches. Integrating the light-switchable configurational properties of an azobenzene into the ligand core, we developed a bidirectional antagonist toolbox for an archetypical family A GPCR, the histamine H receptor (HR). From 16 newly synthesized photoswitchable compounds, VUF14738 (28) and VUF14862 (33) were selected as they swiftly and reversibly photoisomerize and show over 10-fold increased or decreased HR binding affinities, respectively, upon illumination at 360 nm. Both ligands combine long thermal half-lives with fast and high photochemical trans-/ cis conversion, allowing their use in real-time electrophysiology experiments with oocytes to confirm dynamic photomodulation of HR activation in repeated second-scale cycles. VUF14738 and VUF14862 are robust and fatigue-resistant photoswitchable GPCR antagonists suitable for spatiotemporal studies of HR signaling.

摘要

人们迫切需要能够实现时间和空间精确调控 G 蛋白偶联受体(GPCR)的非侵入性方法。光药理学利用光子原位控制光致开关小分子配体的生物学性质,这为化学生物学精准方法提供了很好的前景。我们将偶氮苯的光开关构象特性整合到配体核心中,开发了一种典型的 A 家族 GPCR,即组胺 H 受体(HR)的双向拮抗剂工具包。从 16 种新合成的光致开关化合物中,选择了 VUF14738(28)和 VUF14862(33),因为它们能够快速且可逆地光异构化,并且在 360nm 光照下分别显示出超过 10 倍的 HR 结合亲和力增加或降低。这两种配体都具有较长的热半衰期,以及快速和高效的光化学反式/顺式转化,允许它们在实时卵母细胞电生理学实验中使用,以确认 HR 激活的动态光调控在重复的秒级循环中。VUF14738 和 VUF14862 是稳健且抗疲劳的光致开关 GPCR 拮抗剂,适用于 HR 信号的时空研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a22c/5879491/b70ec0ed879a/ja-2017-11422p_0001.jpg

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