Effective enrichment of glycated proteome using ultrasmall gold nanoclusters functionalized with boronic acid

  • Heo, Hongmae
  • Cho, Seonghyeon
  • Kim, Yuhyeon
  • Ahn, Soomin
  • Mok, Jeong-hun
  • ... Lee, Hookeun
  • 외 1명
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Glycated proteins play a crucial role in various biological pathways and the pathogenesis of human diseases. A comprehensive analysis of glycated proteins is essential for understanding their biological significance. However, their low abundance and heterogeneity in complex biological samples necessitate an enrichment procedure prior to their detection. Current enrichment strategies primarily rely on the boronic acid (BA) affinity method combined with functional nanoparticles; however, the effectiveness of these approaches is often suboptimal. In this study, a novel nanocluster (NC)-based enrichment material was synthesized for the first time, characterized as Au22SG18 functionalized with 24 BA groups, in which SG is glutathione. The functionalized BA established a reversible covalent bond with the cis-dihydroxy group through pH adjustment, enabling selective enrichment of glycated peptides. After the optimization of the enrichment protocol, we demonstrated highly sensitive and selective enrichment of standard glycopeptides using the NC-based enrichment material, exhibiting excellent reusability. Efficient enrichment was also demonstrated for the glycated proteome from human serum. These results highlight the potential of the atomically well-defined ultrasmall Au NCs as a powerful tool for high-throughput analysis of glycated peptides. A novel approach was developed for the first time by combining ultrasmall Au22 nanoclusters with boronic acid (BA) affinity chemistry, achieving highly efficient enrichment of early-stage glycated peptides.

키워드

MASS-SPECTROMETRYNANOPARTICLESLUMINESCENCEGLYCOPEPTIDESRECOGNITIONDERIVATIVESPEPTIDESSTRATEGYCLUSTERSSURFACE
제목
Effective enrichment of glycated proteome using ultrasmall gold nanoclusters functionalized with boronic acid
저자
Heo, HongmaeCho, SeonghyeonKim, YuhyeonAhn, SoominMok, Jeong-hunLee, HookeunLee, Dongil
DOI
10.1039/d4nr03283g
발행일
2024-10
유형
Article; Early Access
저널명
Nanoscale
16
43
페이지
20147 ~ 20154