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Modulating Protein–Protein Interactions with Visible‐Light‐Responsive Peptide Backbone Photoswitches
Author(s) -
Albert Lea,
Peñalver Alberto,
Djokovic Nemanja,
Werel Laura,
Hoffarth Malte,
Ruzic Dusan,
Xu Jing,
Essen LarsOliver,
Nikolic Katarina,
Dou Yali,
Vázquez Olalla
Publication year - 2019
Publication title -
chembiochem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.05
H-Index - 126
eISSN - 1439-7633
pISSN - 1439-4227
DOI - 10.1002/cbic.201800737
Subject(s) - peptidomimetic , azobenzene , photoswitch , chemistry , peptide , biophysics , rational design , crosstalk , combinatorial chemistry , nanotechnology , biochemistry , materials science , biology , photochemistry , molecule , organic chemistry , optics , physics
Life relies on a myriad of carefully orchestrated processes, in which proteins and their direct interplay ultimately determine cellular function and disease. Modulation of this complex crosstalk has recently attracted attention, even as a novel therapeutic strategy. Herein, we describe the synthesis and characterization of two visible‐light‐responsive peptide backbone photoswitches based on azobenzene derivatives, to exert optical control over protein–protein interactions (PPI). The novel peptidomimetics undergo fast and reversible isomerization with low photochemical fatigue under alternatively blue‐/green‐light irradiation cycles. Both bind in the nanomolar range to the protein of interest. Importantly, the best peptidomimetic displays a clear difference between isomers in its protein‐binding capacity and, in turn, in its potential to inhibit enzymatic activity through PPI disruption. In addition, crystal structure determination, docking and molecular dynamics calculations allow a molecular interpretation and open up new avenues in the design and synthesis of future photoswitchable PPI modulators.