Serine-selective aerobic cleavage of peptides and a protein using a water-soluble copper-organoradical conjugate

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Abstract

The site-specific cleavage of peptide bonds is an important chemical modification of biologically relevant macromolecules. The reaction is not only used for routine structural determination of peptides, but is also a potential artificial modulator of protein function. Realizing the substrate scope beyond the conventional chemical or enzymatic cleavage of peptide bonds is, however, a formidable challenge. Here we report a serine-selective peptide-cleavage protocol that proceeds at room temperature and near neutral pH value, through mild aerobic oxidation promoted by a water-soluble copper-organoradical conjugate. The method is applicable to the site-selective cleavage of polypeptides that possess various functional groups. Peptides comprising D-amino acids or sensitive disulfide pairs are competent substrates. The system is extendable to the site-selective cleavage of a native protein, ubiquitin, which comprises more than 70 amino acid residues. © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

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Seki, Y., Tanabe, K., Sasaki, D., Sohma, Y., Oisaki, K., & Kanai, M. (2014). Serine-selective aerobic cleavage of peptides and a protein using a water-soluble copper-organoradical conjugate. Angewandte Chemie - International Edition, 53(25), 6501–6505. https://doi.org/10.1002/anie.201402618

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