Abstract
Photoaffinity Labeling–Affinity-Based Protein Profiling (PAL-AfBPP) provides breakthrough solutions in a variety of fields such as target protein discovery. The selection of photoaffinity connectors is the key component of PAL-AfBPP probe design and application. At present, the development of organic chemistry has also made the thiophene-substituted α-ketoamide, tetrazole, isoxazole, 2-nitrobenzyl alcohol and other structures become new photoaffinity ligand candidates for the design of PAL-AfBPP probes. However, how the conjugation of different linkers with active molecules affects the biological activity, labeling efficiency, and target preference of the parent compounds remains unclear. The previous study found that the active quinazolinone molecules represented by QDAU5 had significant vascular normalizing effect, and finally identified that EphrinB2 was an intracellular target protein of QDAU5. At the same time, it was also found that thymosinβ4 (Tβ4) was effectively enriched by QDAU5 probe, which may be another way for QDAU5 to exert biological effects. Herein, we constructed a photocrosslinker library and a multifunctional photoaffinity probe library to verify the effects of different photocrosslinkers on the activity and labeling preference of quinazolinones. Based on proteomic analysis, the potential target Tβ4 was further validated, and the interaction mode between QDAU5 and Tβ4 was preliminarily elucidated. The results of this study provide a practical reference for the precise selection of photocrosslinkers in PAL-AfBPP probe design, and also provide more support for elucidating the mechanism of angiogenesis regulation and vascular normalization by active quinazolinones.
| Original language | English |
|---|---|
| Article number | 109632 |
| Journal | Bioorganic Chemistry |
| Volume | 173 |
| DOIs | |
| State | Published - 5 Jun 2026 |
Keywords
- Activity preference
- Novel vascular normalization target
- Photocrosslinkers
- Quinazolinone
- Tβ4
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