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氘代作为增强基于偶氮苯的光药理学的一般策略。

Deuteration as a General Strategy to Enhance Azobenzene-Based Photopharmacology.

机构信息

Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP), 13125, Berlin, Germany.

Department of Biochemistry, Weill Cornell Medicine, New York, NY 10065, USA.

出版信息

Angew Chem Int Ed Engl. 2024 Sep 23;63(39):e202408300. doi: 10.1002/anie.202408300. Epub 2024 Aug 19.

Abstract

Chemical photoswitches have become a widely used approach for the remote control of biological functions with spatiotemporal precision. Several molecular scaffolds have been implemented to improve photoswitch characteristics, ranging from the nature of the photoswitch itself (e.g. azobenzenes, dithienylethenes, hemithioindigo) to fine-tuning of aromatic units and substituents. Herein, we present deuterated azobenzene photoswitches as a general means of enhancing the performance of photopharmacological molecules. Deuteration can improve azobenzene performance in terms of light sensitivity (higher molar extinction coefficient), photoswitch efficiency (higher photoisomerization quantum yield), and photoswitch kinetics (faster macroscopic rate of photoisomerization) with minimal alteration to the underlying structure of the photopharmacological ligand. We report synthesized deuterated azobenzene-based ligands for the optimized optical control of ion channel and G protein-coupled receptor (GPCR) function in live cells, setting the stage for the straightforward, widespread adoption of this approach.

摘要

化学光开关已成为一种广泛使用的方法,可以精确地远程控制具有时空分辨率的生物功能。已经采用了几种分子支架来改善光开关的特性,范围从光开关本身的性质(例如偶氮苯、二噻吩乙烯、半硫靛)到芳基单元和取代基的微调。在此,我们提出氘代偶氮苯光开关作为增强光药理分子性能的通用方法。氘代可以提高偶氮苯的性能,包括光敏感性(更高的摩尔消光系数)、光开关效率(更高的光异构化量子产率)和光开关动力学(更快的宏观光异构化速率),而对光药理配体的基本结构的改变最小。我们报告了合成的基于氘代偶氮苯的配体,用于优化活细胞中离子通道和 G 蛋白偶联受体 (GPCR) 功能的光学控制,为该方法的直接、广泛采用奠定了基础。

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