TY - JOUR
T1 - A Protein Cleavage Platform Based on Selective Formylation at Cysteine Residues
AU - Zenmyo, Naoki
AU - Matsumoto, Yuya
AU - Yasuda, Akihiro
AU - Uchinomiya, Shohei
AU - Shindo, Naoya
AU - Sasaki-Tabata, Kaori
AU - Mishiro-Sato, Emi
AU - Tamura, Tomonori
AU - Hamachi, Itaru
AU - Ojida, Akio
N1 - Publisher Copyright:
© 2025 American Chemical Society.
PY - 2025
Y1 - 2025
N2 - Site-selective cleavage of the peptide backbone in proteins is an important class of post-translational modification (PTM) in nature. However, the organic chemistry for such site-selective peptide bond cleavages has yet to be fully explored. Herein, we report cysteine S-formylation as a means of selective protein backbone cleavage. We developed N-formyl sulfonylanilide as a cysteine-selective formylation reagent for peptides and proteins. Upon S-formylation with the reagent, the amide bond adjacent to the S-formylated cysteine is cleaved by hydrolysis under neutral aqueous conditions. Formylation probes bearing a protein ligand enabled the affinity-based selective cleavage of the target proteins not only in the test tube but also under biorelevant conditions such as in crude cell lysate and on the cell surface. These results demonstrate the high biocompatibility of this protein cleavage technology. A proof-of-concept study of cleavage-induced protein activation further demonstrates its utility as a platform for the functional regulation of proteins by artificial PTM.
AB - Site-selective cleavage of the peptide backbone in proteins is an important class of post-translational modification (PTM) in nature. However, the organic chemistry for such site-selective peptide bond cleavages has yet to be fully explored. Herein, we report cysteine S-formylation as a means of selective protein backbone cleavage. We developed N-formyl sulfonylanilide as a cysteine-selective formylation reagent for peptides and proteins. Upon S-formylation with the reagent, the amide bond adjacent to the S-formylated cysteine is cleaved by hydrolysis under neutral aqueous conditions. Formylation probes bearing a protein ligand enabled the affinity-based selective cleavage of the target proteins not only in the test tube but also under biorelevant conditions such as in crude cell lysate and on the cell surface. These results demonstrate the high biocompatibility of this protein cleavage technology. A proof-of-concept study of cleavage-induced protein activation further demonstrates its utility as a platform for the functional regulation of proteins by artificial PTM.
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U2 - 10.1021/jacs.4c10991
DO - 10.1021/jacs.4c10991
M3 - Article
C2 - 39818953
AN - SCOPUS:85215843875
SN - 0002-7863
JO - Journal of the American Chemical Society
JF - Journal of the American Chemical Society
ER -