1. Academic Validation
  2. Characterization of protein serotonylation via bioorthogonal labeling and enrichment

Characterization of protein serotonylation via bioorthogonal labeling and enrichment

  • J Proteome Res. 2014 Aug 1;13(8):3523-9. doi: 10.1021/pr5003438.
Jason Ching-Yao Lin 1 Chi-Chi Chou Zhijay Tu Lun-Fu Yeh Shang-Chuen Wu Kay-Hooi Khoo Chun-Hung Lin
Affiliations

Affiliation

  • 1 Institute of Biological Chemistry, ‡Core Facilities for Protein Structural Analysis, and §Chemical Biology and Molecular Biophysics, Taiwan International Graduate Program, Academia Sinica , 128 Academia Road Section 2, Taipei 11529, Taiwan.
Abstract

Protein serotonylation is a transglutaminase-mediated phenomenon whose biological mechanism of protein serotonylation is not yet fully understood, as the complete profiling of serotonylation targets in a proteome remains a critical challenge to date. Utilizing an alkyne-functionalized serotonin derivative bioorthogonally coupled to a Cleavable Linker, we developed a method to selectively enrich serotonylated proteins in a complex sample. With online nanoflow liquid chromatography and LTQ-Orbitrap Velos hybrid mass spectrometer detection, we identified 46 proteins with 50 serotonylation sites at their glutamine residues. Mass spectrometric analysis also generated direct residue-level evidence of various biological processes such as transglutaminase-chaperon interactions as well as actin assembly. An enrichment workflow utilizing Click Chemistry and on-bead digestion allowed us to achieve site-specific identification of protein serotonylation by mass spectrometry, and results obtained hereby also provided a great foundation in the elucidation of the true roles of protein serotonylation in biological systems.

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