Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences , Flemingovo n. 2 , 16610 , Prague 6 , Czech Republic.
Department of Biochemistry, Faculty of Science , Charles University , Hlavova 8 , 12843 , Prague 2 , Czech Republic.
ACS Chem Biol. 2018 Dec 21;13(12):3333-3342. doi: 10.1021/acschembio.8b00791. Epub 2018 Dec 7.
Identifying protein targets of bioactive small molecules often requires complex, lengthy development of affinity probes. We present a method for stochastic modification of small molecules of interest with a photoactivatable phenyldiazirine linker. The resulting isomeric mixture is conjugated to a hydrophilic copolymer decorated with biotin and a fluorophore. We validated this approach using known inhibitors of several medicinally relevant enzymes. At least a portion of the stochastic derivatives retained their binding to the target, enabling target visualization, isolation, and identification. Moreover, the mix of stochastic probes could be separated into fractions and tested for binding affinity. The structure of the active probe could be determined and the probe resynthesized to improve binding efficiency. Our approach can thus enable rapid target isolation, identification, and visualization, while providing information required for subsequent synthesis of an optimized probe.
鉴定生物活性小分子的蛋白质靶标通常需要复杂且冗长的亲和探针开发。我们提出了一种用光活化的苯重氮化合物连接物随机修饰感兴趣的小分子的方法。所得的差向异构体混合物与带有生物素和荧光团的亲水性共聚物缀合。我们使用几种医学相关酶的已知抑制剂验证了这种方法。至少一部分随机衍生物保留了与靶标的结合能力,从而能够实现靶标可视化、分离和鉴定。此外,随机探针的混合物可以分成几部分进行结合亲和力测试。可以确定活性探针的结构并重新合成探针以提高结合效率。因此,我们的方法可以实现快速的靶标分离、鉴定和可视化,同时提供后续优化探针合成所需的信息。