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Expanding the Repertoire of Photoswitchable Unnatural Amino Acids for Enzyme Engineering
Hiefinger, Caroline
, Marcon, Michela
, Pape, Verena, Casadevall, Guillem
, Lahmy, Ranit
, Haag, Christoph
, Nazet, Julian, Bartl, Michael, Bruckmann, Astrid
, Osuna, Sílvia
, König, Burkhard and Hupfeld, Andrea
(2025)
Expanding the Repertoire of Photoswitchable Unnatural Amino Acids for Enzyme Engineering.
Angewandte Chemie International Edition, e202508562.
Date of publication of this fulltext: 06 Aug 2025 08:35
Article
DOI to cite this document: 10.5283/epub.77502
Abstract
Photoswitchable unnatural amino acids (psUAAs) play a crucial role in the engineering of light-sensitivity in enzymes, which holds significant promise for diverse applications such as biotherapy and biocatalysis. Besides near-quantitative photoconversion, the success and expediency of a psUAA for a certain application is defined by its interaction potential with the enzyme, its thermal stability ...
Photoswitchable unnatural amino acids (psUAAs) play a crucial role in the engineering of light-sensitivity in enzymes, which holds significant promise for diverse applications such as biotherapy and biocatalysis. Besides near-quantitative photoconversion, the success and expediency of a psUAA for a certain application is defined by its interaction potential with the enzyme, its thermal stability and its effective wavelength of irradiation. To establish high versatility in the current repertoire, we have designed and synthesized six psUAAs based on azobenzene, arylazopyrazole, arylazothiazole, hemithioindigo and spiropyran photoswitches. The resulting psUAAs exhibit an enhanced interaction potential within an enzyme owing to their capacity for hydrogen bonding, ionic interactions and metal ion coordination. Moreover, we observed diverse photochemical behaviors among the psUAAs, with four of them reversibly switching between the isomers with purely visible light. Notably, we identified orthogonal aminoacyl-tRNA synthetases that facilitate the incorporation of five of the six psUAAs co-translationally and computationally analyzed the synthetase-psUAA interactions. Finally, we evaluated the photochemical behavior of the five psUAAs within an enzymatic model and tested the photocontrol of catalysis confirming their diversity. Ultimately, our findings significantly expanded the repertoire of psUAAs and demonstrated their feasibility for enzyme
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Details
| Item type | Article | ||||
| Journal or Publication Title | Angewandte Chemie International Edition | ||||
| Publisher: | Wiley | ||||
|---|---|---|---|---|---|
| Page Range: | e202508562 | ||||
| Date | 4 August 2025 | ||||
| Institutions | Biology, Preclinical Medicine > Institut für Biochemie, Genetik und Mikrobiologie Chemistry and Pharmacy > Institut für Organische Chemie > Lehrstuhl Prof. Dr. Burkhard König | ||||
| Projects |
Funded by:
Deutsche Forschungsgemeinschaft (DFG)
(323255115)
| ||||
| Identification Number |
| ||||
| Keywords | Diazo compounds • Enzyme catalysis • Photocontrol • Spiro compounds • Unnatural amino acids | ||||
| Dewey Decimal Classification | 500 Science > 540 Chemistry & allied sciences 500 Science > 570 Life sciences | ||||
| Status | Published | ||||
| Refereed | Yes, this version has been refereed | ||||
| Created at the University of Regensburg | Partially | ||||
| URN of the UB Regensburg | urn:nbn:de:bvb:355-epub-775028 | ||||
| Item ID | 77502 |
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