Discriminating changes in protein structure using tyrosine conjugation.

TitleDiscriminating changes in protein structure using tyrosine conjugation.
Publication TypeJournal Article
Year of Publication2020
AuthorsMoinpour M, Barker NK, Guzman LE, Jewett JC, Langlais PR, Schwartz JC
JournalProtein Sci
Volume29
Issue8
Pagination1784-1793
Date Published2020 08
ISSN1469-896X
KeywordsAnimals, Cattle, Chromatography, Liquid, Protein Domains, Serum Albumin, Bovine, Tandem Mass Spectrometry, Triazoles, Tyrosine
Abstract

Chemical modification of proteins has been crucial in engineering protein-based therapies, targeted biopharmaceutics, molecular probes, and biomaterials. Here, we explore the use of a conjugation-based approach to sense alternative conformational states in proteins. Tyrosine has both hydrophobic and hydrophilic qualities, thus allowing it to be positioned at protein surfaces, or binding interfaces, or to be buried within a protein. Tyrosine can be conjugated with 4-phenyl-3H-1,2,4-triazole-3,5(4H)-dione (PTAD). We hypothesized that individual protein conformations could be distinguished by labeling tyrosine residues in the protein with PTAD. We conjugated tyrosine residues in a well-folded protein, bovine serum albumin (BSA), and quantified labeled tyrosine with liquid chromatography with tandem mass spectrometry. We applied this approach to alternative conformations of BSA produced in the presence of urea. The amount of PTAD labeling was found to relate to the depth of each tyrosine relative to the protein surface. This study demonstrates a new use of tyrosine conjugation using PTAD as an analytic tool able to distinguish the conformational states of a protein.

DOI10.1002/pro.3897
Alternate JournalProtein Sci
PubMed ID32483864
PubMed Central IDPMC7380675
Grant ListNS082376 / NS / NINDS NIH HHS / United States
R21CA238499 / NH / NIH HHS / United States
S10OD013237 / NH / NIH HHS / United States