Proteomics

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Triazolinedione protein modification: from an overlooked off-target effect to a tryptophan-based bioconjugation strategy


ABSTRACT: Labelling of tyrosine residues in peptides and proteins has been reported to selectively occur via a 'tyrosine-click' reaction with triazolinedione reagents (TAD). However, we here demonstrate that TAD reagents are actually not selective for tyrosine and that tryptophan residues are in fact also labelled with these reagents. This off-target labelling remained under the radar as it is challenging to detect these physiologically stable but thermally labile modifications with the commonly used HCD and CID MS/MS techniques. We show that selectivity of tryptophan over tyrosine can be achieved by lowering the pH of the aqueous buffer to effect selective Trp-labelling. Given the low relative abundance of tryptophan compared to tyrosine in natural proteins, this results in a new site-selective bioconjugation method that does not rely on enzymes nor unnatural amino acids and is demonstrated for peptides and recombinant proteins.

INSTRUMENT(S): Orbitrap Fusion Lumos

ORGANISM(S): Homo Sapiens (human)

TISSUE(S): Hepatocyte, Cell Culture

SUBMITTER: Klaas Decoene  

LAB HEAD: Kris Gevaert

PROVIDER: PXD031607 | Pride | 2022-06-09

REPOSITORIES: Pride

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Publications

Triazolinedione protein modification: from an overlooked off-target effect to a tryptophan-based bioconjugation strategy.

Decoene Klaas W KW   Unal Kamil K   Staes An A   Zwaenepoel Olivier O   Gettemans Jan J   Gevaert Kris K   Winne Johan M JM   Madder Annemieke A  

Chemical science 20220315 18


Labelling of tyrosine residues in peptides and proteins has been reported to selectively occur <i>via</i> a 'tyrosine-click' reaction with triazolinedione reagents (TAD). However, we here demonstrate that TAD reagents are actually not selective for tyrosine and that tryptophan residues are in fact also labelled with these reagents. This off-target labelling remained under the radar as it is challenging to detect these physiologically stable but thermally labile modifications with the commonly us  ...[more]

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