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Photo-Brook rearrangement of acyl silanes as a strategy for photoaffinity probe design.

Annika C S PageSpencer O ScholzKatherine N KeenanJessica N SpradlinBridget P BelcherScott M BrittainJohn A TallaricoJeffery M McKennaMarkus SchirleDaniel K NomuraF Dean Toste
Published in: Chemical science (2022)
Photoaffinity labeling (PAL) is a powerful tool for the identification of non-covalent small molecule-protein interactions that are critical to drug discovery and medicinal chemistry, but this approach is limited to only a small subset of robust photocrosslinkers. The identification of new photoreactive motifs capable of covalent target capture is therefore highly desirable. Herein, we report the design, synthesis, and evaluation of a new class of PAL warheads based on the UV-triggered 1,2-photo-Brook rearrangement of acyl silanes, which hitherto have not been explored for PAL workflows. Irradiation of a series of probes in cell lysate revealed an i Pr-substituted acyl silane with superior photolabeling and minimal thermal background labeling compared to other substituted acyl silanes. Further, small molecule (+)-JQ1- and rapamycin-derived i Pr acyl silanes were shown to selectively label recombinant BRD4-BD1 and FKBP12, respectively, with minimal background. Together, these data highlight the untapped potential of acyl silanes as a novel, tunable scaffold for photoaffinity labeling.
Keyphrases
  • small molecule
  • drug discovery
  • fatty acid
  • protein protein
  • single cell
  • molecular docking
  • stem cells
  • quantum dots
  • big data
  • machine learning
  • single molecule
  • human health
  • data analysis
  • energy transfer
  • aqueous solution