Issue 12, 2024

Enrichment of phosphopeptides by arginine-functionalized magnetic chitosan nanoparticles

Abstract

One of the most crucial and prevalent post-translational modifications is the phosphorylation of proteins. The study and examination of protein phosphorylation hold immense importance in comprehending disease mechanisms and discovering novel biomarkers. However, the inherent low abundance, low ionization efficiency, and coexistence with non phosphopeptides seriously affect the direct analysis of phosphopeptides by mass spectrometry. In order to tackle these problems, it is necessary to carry out selective enrichment of phosphopeptides prior to conducting mass spectrometry analysis. Herein, magnetic chitosan nanoparticles were developed by incorporating arginine, and were then utilized for phosphopeptide enrichment. A tryptic digest of β-casein was chosen as the standard substance. After enrichment, combined with matrix assisted laser desorption ionization time of flight mass spectrometry (MALDI-TOF MS), the detection limit of the method was 0.4 fmol. The synthesized magnetic material demonstrated great potential in the detection of phosphopeptides in complex samples, as proven by its successful application in detecting phosphopeptides in skim milk and human saliva samples.

Graphical abstract: Enrichment of phosphopeptides by arginine-functionalized magnetic chitosan nanoparticles

Article information

Article type
Paper
Submitted
24 Jan 2024
Accepted
08 Feb 2024
First published
14 Feb 2024

Anal. Methods, 2024,16, 1785-1792

Enrichment of phosphopeptides by arginine-functionalized magnetic chitosan nanoparticles

J. Yang, S. Zhou, H. Zheng and Q. Jia, Anal. Methods, 2024, 16, 1785 DOI: 10.1039/D4AY00154K

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