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Design and Synthesis of Visible-Light-Responsive Azobenzene Building Blocks for Chemical Biology

Authors :
Volarić, Jana
Buter, Jeffrey
Schulte, Albert M.
Van Den Berg, Keimpe-Oeds
Santamaría-Aranda, Eduardo
Szymanski, Wiktor
Feringa, Ben L.
0000-0002-6198-6737
0000-0002-4440-6702
0000-0001-9948-6132
0000-0002-9754-9248
0000-0003-0588-8435
Synthetic Organic Chemistry
​Basic and Translational Research and Imaging Methodology Development in Groningen (BRIDGE)
Source :
Journal of Organic Chemistry. AMER CHEMICAL SOC INC
Publication Year :
2022
Publisher :
American Chemical Society (ACS), 2022.

Abstract

Tetra-ortho-fluoro-azobenzenes are a class of photoswitches useful for the construction of visible-light-controlled molecular systems. They can be used to achieve spatio-temporal control over the properties of a chosen bioactive molecule. However, the introduction of different substituents to the tetra-fluoro-azobenzene core can significantly affect the photochemical properties of the switch and compromise biocompatibility. Herein, we explored the effect of useful substituents, such as functionalization points, attachment handles, and water-solubilizing groups, on the photochemical properties of this photochromic system. In general, all the tested fluorinated azobenzenes exhibited favorable photochemical properties, such as high photostationary state distribution and long half-lives, both in organic solvents and in water. One of the azobenzene building blocks was functionalized with a trehalose group to enable the uptake of the photoswitch into mycobacteria. Following metabolic uptake and incorporation of the trehalose-based azobenzene in the mycobacterial cell wall, we demonstrated photoswitching of the azobenzene in the isolated total lipid extract.

Details

ISSN :
15206904 and 00223263
Volume :
87
Database :
OpenAIRE
Journal :
The Journal of Organic Chemistry
Accession number :
edsair.doi.dedup.....1df3c72b6c86dda8f5da0d6f5c67655f
Full Text :
https://doi.org/10.1021/acs.joc.2c01777