Reinvestigation of an O-Salicylaldehyde Ester Functional Group in Aqueous Buffer and Discovery of a Coumarin Scaffold Probe for Selective N-Terminal Cysteine Labeling
- Authors
- Murale, Dhiraj P.; Hong, Seong Cheol; Jang, Se-young; Lee, Jun-Seok
- Issue Date
- 2018-12-18
- Publisher
- WILEY-V C H VERLAG GMBH
- Citation
- CHEMBIOCHEM, v.19, no.24, pp.2545 - 2549
- Abstract
- Many intracellular proteins are metabolically unstable, and their half-life was known to be controlled by the "N-end rule," that is, the N-terminal residue controlled protein stability. To visualize or measure the cellular stability of a protein, depending on the N-terminal residues, attention is being paid to the development of selective labeling methods for individual N-terminal amino acids. However, there are only a limited number of functional groups available for specific N-terminal amino acid labeling in a biological environment. Herein, we report a re-examination of salicylaldehyde ester for selective N-terminal residue tagging. Salicylaldehyde ester has been used for chemical ligation to N-terminal serine or threonine under pyridine/acetic acid conditions. Inspired by previous selective serine/threonine labeling, N-terminal labeling of salicylaldehyde ester in aqueous buffer has been examined by using boron-dipyrromethene (BODIPY), rhodamine, and coumarin probes. Surprisingly, the selectivity not only significantly differed, depending on the fluorophore incorporated in salicylaldehyde, but was also perturbed by the addition of a small fraction of phosphate-buffered saline. In particular, the coumarin-based salicylaldehyde ester probe showed notable selectivity against N-terminal cysteine under aqueous buffer conditions. This result reveals the serendipitous discovery of a new N-terminal cysteine labeling strategy.
- Keywords
- END RULE; PROTEIN; SERINE; BIOCONJUGATION; THREONINE; PEPTIDES; LIGATION; END RULE; PROTEIN; SERINE; BIOCONJUGATION; THREONINE; PEPTIDES; LIGATION; amino acids; fluorescence; labeling agents; peptides; salicylaldehyde ester
- ISSN
- 1439-4227
- URI
- https://pubs.kist.re.kr/handle/201004/120564
- DOI
- 10.1002/cbic.201800565
- Appears in Collections:
- KIST Article > 2018
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