1. Academic Validation
  2. Selenenylsulfide covalent-directed chemistry for the detection of sulfhydryl groups using a diselenide fluorescent probe

Selenenylsulfide covalent-directed chemistry for the detection of sulfhydryl groups using a diselenide fluorescent probe

  • RSC Adv. 2024 Nov 18;14(49):36754-36762. doi: 10.1039/d4ra05923a.
Chunqiu Ma 1 Jichao Xu 1 Xiaolu Wang 1 Xuewen Wang 1 Lei Zhang 1 Su Jing 1
Affiliations

Affiliation

  • 1 School of Chemistry and Molecular Engineering, Nanjing Tech University 30 South Puzhu Road Nanjing 211816 Jiangsu China sjing@njtech.edu.cn.
Abstract

We report the development of a diglycosyldiselenide-based fluorescent probe for the rapid detection of sulfhydryl-containing biomolecules. The probe facilitates a chemoselective coupling reaction with sulfhydryl groups in aqueous buffer under ambient conditions, resulting in the formation of homogeneous Se-S conjugates within one hour. Using glutathione, a sulfhydryl-containing biomolecule, as a proof of concept, the probe achieved a detection limit of 0.75 μM based on the 3σ criterion. The method was further extended to the fluorescent labeling of cysteine-containing Peptides, proteins, and living Bacterial cells, showcasing the utility of Se-S covalent-directed chemistry as an analytical tool. This approach underscores the considerable potential of diglycosyldiselenide-based fluorescent probes for broader applications in biochemical research.

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